{"id":16881,"date":"2024-11-30T19:30:43","date_gmt":"2024-11-30T11:30:43","guid":{"rendered":"https:\/\/dac.nycu.edu.tw\/?post_type=portfolio&#038;p=16881"},"modified":"2026-08-04T20:12:33","modified_gmt":"2026-08-04T12:12:33","slug":"associate-professor-chia-chih-chang","status":"publish","type":"portfolio","link":"https:\/\/dac.nycu.edu.tw\/en\/portfolio-item\/associate-professor-chia-chih-chang\/","title":{"rendered":"Associate Professor Chia-Chih Chang"},"content":{"rendered":"\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1zuxevr-39817ad25514522c5f17f9f73016ec46\">\n.avia-section.av-1zuxevr-39817ad25514522c5f17f9f73016ec46{\nmargin-top:-50px;\nmargin-bottom:0px;\n}\n.avia-section.av-1zuxevr-39817ad25514522c5f17f9f73016ec46 .av-parallax .av-parallax-inner{\nbackground-repeat:no-repeat;\nbackground-image:url(https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/03\/trnava.jpg);\nbackground-position:50% 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custom-color-heading  avia-builder-el-2  el_before_av_heading  avia-builder-el-first '><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Associate Professor<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1viwziv-72dfbed504ee1f3673416d359643dffe\">\n#top .av-special-heading.av-1viwziv-72dfbed504ee1f3673416d359643dffe{\npadding-bottom:10px;\ncolor:#ffffff;\n}\nbody .av-special-heading.av-1viwziv-72dfbed504ee1f3673416d359643dffe .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-1viwziv-72dfbed504ee1f3673416d359643dffe .special-heading-inner-border{\nborder-color:#ffffff;\n}\n.av-special-heading.av-1viwziv-72dfbed504ee1f3673416d359643dffe .av-subheading{\nfont-size:15px;\n}\n\n@media only screen and (min-width: 990px){ \n#top #wrap_all 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class='template-page content  av-content-full alpha units'><div class='post-entry post-entry-type-page post-entry-16881'><div class='entry-content-wrapper clearfix'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1r5hz6f-703d6a73c0c31ea2795015b6a5abcaec\">\n#top .hr.hr-invisible.av-1r5hz6f-703d6a73c0c31ea2795015b6a5abcaec{\nheight:5px;\n}\n<\/style>\n<div  class='hr av-1r5hz6f-703d6a73c0c31ea2795015b6a5abcaec hr-invisible  avia-builder-el-5  el_after_av_section  el_before_av_hr  avia-builder-el-first  av-small-hide av-mini-hide'><span class='hr-inner '><span class=\"hr-inner-style\"><\/span><\/span><\/div><\/p>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1plj0lj-f60e32dce1d9b26d19a7243c869cc9a8\">\n#top .hr.hr-invisible.av-1plj0lj-f60e32dce1d9b26d19a7243c869cc9a8{\nheight:30px;\n}\n<\/style>\n<div  class='hr av-1plj0lj-f60e32dce1d9b26d19a7243c869cc9a8 hr-invisible  avia-builder-el-6  el_after_av_hr  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srcset=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2025\/05\/\u5f35\u4f73\u667aChia-Chih-Chang.png 600w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2025\/05\/\u5f35\u4f73\u667aChia-Chih-Chang-235x200.png 235w\" sizes=\"(max-width: 600px) 100vw, 600px\" \/><\/div><\/div><\/div><\/div><div class='av-flex-placeholder'><\/div>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1l5xrw7-101b74e5d064a83d93a155e5959bace7\">\n.flex_column.av-1l5xrw7-101b74e5d064a83d93a155e5959bace7{\nwidth:65.166666666667%;\nmargin-left:0;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-1l5xrw7-101b74e5d064a83d93a155e5959bace7 .av-flex-placeholder{\nwidth:4.5%;\n}\n<\/style>\n<div  class='flex_column av-1l5xrw7-101b74e5d064a83d93a155e5959bace7 av_two_third  avia-builder-el-9  el_after_av_one_third  el_before_av_hr  flex_column_table_cell av-equal-height-column av-align-middle  '     ><p>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1jrh2nr-d751c75a2752502d62b53309002bce91\">\n#top .av-special-heading.av-1jrh2nr-d751c75a2752502d62b53309002bce91{\nmargin:0 0 0 0;\npadding-bottom:10px;\ncolor:#005daf;\n}\nbody .av-special-heading.av-1jrh2nr-d751c75a2752502d62b53309002bce91 .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-1jrh2nr-d751c75a2752502d62b53309002bce91 .special-heading-inner-border{\nborder-color:#005daf;\n}\n.av-special-heading.av-1jrh2nr-d751c75a2752502d62b53309002bce91 .av-subheading{\nfont-size:15px;\n}\n\n@media only screen and (min-width: 480px) and (max-width: 767px){ \n#top .av-special-heading.av-1jrh2nr-d751c75a2752502d62b53309002bce91{\nmargin:30px 0 0 0;\n}\n}\n\n@media only screen and (max-width: 479px){ \n#top .av-special-heading.av-1jrh2nr-d751c75a2752502d62b53309002bce91{\nmargin:30px 0 0 0;\n}\n}\n<\/style>\n<div  class='av-special-heading av-1jrh2nr-d751c75a2752502d62b53309002bce91 av-special-heading-h2 custom-color-heading blockquote modern-quote  avia-builder-el-10  el_before_av_heading  avia-builder-el-first '><h2 class='av-special-heading-tag '  itemprop=\"headline\"  >\u5f35\u4f73\u667a Chia-Chih Chang<\/h2><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-5fyb6f-6d853fbaae58ccefb24fb449635966fe\">\n#top .av-special-heading.av-5fyb6f-6d853fbaae58ccefb24fb449635966fe{\nmargin:0 0 0 0;\npadding-bottom:20px;\ncolor:#005daf;\n}\nbody .av-special-heading.av-5fyb6f-6d853fbaae58ccefb24fb449635966fe .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-5fyb6f-6d853fbaae58ccefb24fb449635966fe .special-heading-inner-border{\nborder-color:#005daf;\n}\n.av-special-heading.av-5fyb6f-6d853fbaae58ccefb24fb449635966fe .av-subheading{\nfont-size:15px;\n}\n\n@media only screen and (min-width: 480px) and (max-width: 767px){ \n#top .av-special-heading.av-5fyb6f-6d853fbaae58ccefb24fb449635966fe{\nmargin:0 0 0 0;\n}\n}\n\n@media only screen and (max-width: 479px){ \n#top .av-special-heading.av-5fyb6f-6d853fbaae58ccefb24fb449635966fe{\nmargin:0 0 0 0;\n}\n}\n<\/style>\n<div  class='av-special-heading av-5fyb6f-6d853fbaae58ccefb24fb449635966fe av-special-heading-h3 custom-color-heading blockquote modern-quote  avia-builder-el-11  el_after_av_heading  el_before_av_textblock  title-line'><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Associate Professor<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><br \/>\n<section  class='av_textblock_section av-1gc9f0n-eeac0a01f0cde584c790b1c49e6b1db0 '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock link_text'  itemprop=\"text\" ><p>TEL | 03-5712121 #56532<\/p>\n<p>OFFICE | TKB R716A<\/p>\n<p>Email | cchang113ac@nycu.edu.tw<\/p>\n<p>Lab TEL | 03-5172121 #56533<\/p>\n<\/div><\/section><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1ep0klz-0fb4c35d100d7a80d777907601ee9974\">\n#top .hr.hr-invisible.av-1ep0klz-0fb4c35d100d7a80d777907601ee9974{\nheight:15px;\n}\n<\/style>\n<div  class='hr av-1ep0klz-0fb4c35d100d7a80d777907601ee9974 hr-invisible  avia-builder-el-13  el_after_av_textblock  el_before_av_buttonrow '><span class='hr-inner '><span class=\"hr-inner-style\"><\/span><\/span><\/div><br \/>\n<div  class='avia-buttonrow-wrap av-1cpi753-bcb41039d6ad2093111172601f131abc avia-buttonrow-left  avia-builder-el-14  el_after_av_hr  avia-builder-el-last '>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1ajecaf-6f66accf2934155c59283f16363fafb6\">\n#top #wrap_all .avia-button.av-1ajecaf-6f66accf2934155c59283f16363fafb6{\nmargin-bottom:5px;\nmargin-right:5px;\n}\n#top #wrap_all .avia-button.av-1ajecaf-6f66accf2934155c59283f16363fafb6:hover{\nopacity:1;\ntransition:all 0.4s ease-in-out;\n}\n<\/style>\n<a href='https:\/\/sites.google.com\/nctu.edu.tw\/georgechang113ac'  class='avia-button av-1ajecaf-6f66accf2934155c59283f16363fafb6 avia-icon_select-yes-right-icon avia-size-medium av-icon-on-hover avia-color-theme-color'  target=\"_blank\"  rel=\"noopener noreferrer\"  aria-label=\"CGClab\/\u5f35\u4f73\u667a\u8001\u5e2b\u5be6\u9a57\u5ba4\u7db2\u7ad9\"><span class='avia_iconbox_title' >CGClab\/\u5f35\u4f73\u667a\u8001\u5e2b\u5be6\u9a57\u5ba4\u7db2\u7ad9<\/span><span class='avia_button_icon avia_button_icon_right avia-iconfont avia-font-entypo-fontello' data-av_icon='\ue881' data-av_iconfont='entypo-fontello' ><\/span><\/a>\n<\/div><\/p><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-194p2ev-7162ff8000af09e4f5f6149854e0fedd\">\n#top .hr.hr-invisible.av-194p2ev-7162ff8000af09e4f5f6149854e0fedd{\nheight:30px;\n}\n<\/style>\n<div  class='hr av-194p2ev-7162ff8000af09e4f5f6149854e0fedd hr-invisible  avia-builder-el-15  el_after_av_two_third  el_before_av_one_full  av-desktop-hide av-medium-hide'><span class='hr-inner '><span class=\"hr-inner-style\"><\/span><\/span><\/div><\/p>\n<div class='flex_column_table av-17hpnif-ff6d257c3ce817afd1df095f7793d84a sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-17hpnif-ff6d257c3ce817afd1df095f7793d84a\">\n.flex_column.av-17hpnif-ff6d257c3ce817afd1df095f7793d84a{\nwidth:100%;\nmargin-left:0;\nborder-radius:0 50px 0 0;\npadding:25px 30px 15px 30px;\nbackground-color:#ffeca0;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-17hpnif-ff6d257c3ce817afd1df095f7793d84a .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-17hpnif-ff6d257c3ce817afd1df095f7793d84a av_one_full  avia-builder-el-16  el_after_av_hr  el_before_av_one_full  double-line-wy titlebox-mob first flex_column_table_cell av-equal-height-column av-align-top  '     ><style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-4alyxj-7163f11194cf54af521d43316dffaa41\">\n#top .av-special-heading.av-4alyxj-7163f11194cf54af521d43316dffaa41{\npadding-bottom:10px;\n}\nbody .av-special-heading.av-4alyxj-7163f11194cf54af521d43316dffaa41 .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-4alyxj-7163f11194cf54af521d43316dffaa41 .av-subheading{\nfont-size:15px;\n}\n<\/style>\n<div  class='av-special-heading av-4alyxj-7163f11194cf54af521d43316dffaa41 av-special-heading-h3 blockquote modern-quote  avia-builder-el-17  avia-builder-el-no-sibling '><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Education<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-14c3xkn-3d817267de133d5561125ef564828326 sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-14c3xkn-3d817267de133d5561125ef564828326\">\n#top .flex_column_table.av-equal-height-column-flextable.av-14c3xkn-3d817267de133d5561125ef564828326{\nmargin-top:0px;\nmargin-bottom:0px;\n}\n.flex_column.av-14c3xkn-3d817267de133d5561125ef564828326{\nwidth:100%;\nmargin-left:0;\nborder-width:2px;\nborder-color:#ffeca0;\nborder-style:solid;\npadding:30px 30px 30px 30px;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-14c3xkn-3d817267de133d5561125ef564828326 .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-14c3xkn-3d817267de133d5561125ef564828326 av_one_full  avia-builder-el-18  el_after_av_one_full  el_before_av_one_full  first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><section  class='av_textblock_section av-13l7513-bf3a66d0d5d42bd7d406d20ef8dce418 '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p><em>Ph.D.\u00a0<\/em>in Polymer Science and Engineering, University of Massachusetts, Amherst, MA<\/p>\n<p><em>B.S.\u00a0<\/em>in Chemistry, Colorado School of Mines, Golden, CO<\/p>\n<\/div><\/section><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-11byjjb-3dc07f2b00bfa55eb8d24e3a8471b09b sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-11byjjb-3dc07f2b00bfa55eb8d24e3a8471b09b\">\n.flex_column.av-11byjjb-3dc07f2b00bfa55eb8d24e3a8471b09b{\nwidth:100%;\nmargin-left:0;\nborder-radius:0 50px 0 0;\npadding:25px 30px 15px 30px;\nbackground-color:#3a4586;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-11byjjb-3dc07f2b00bfa55eb8d24e3a8471b09b .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-11byjjb-3dc07f2b00bfa55eb8d24e3a8471b09b av_one_full  avia-builder-el-20  el_after_av_one_full  el_before_av_one_full  double-line-wy titlebox-mob first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-zttds7-b7bfddf8b2f7495f8ec4d4081a2fb912\">\n#top .av-special-heading.av-zttds7-b7bfddf8b2f7495f8ec4d4081a2fb912{\npadding-bottom:10px;\ncolor:#ffffff;\n}\nbody .av-special-heading.av-zttds7-b7bfddf8b2f7495f8ec4d4081a2fb912 .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-zttds7-b7bfddf8b2f7495f8ec4d4081a2fb912 .special-heading-inner-border{\nborder-color:#ffffff;\n}\n.av-special-heading.av-zttds7-b7bfddf8b2f7495f8ec4d4081a2fb912 .av-subheading{\nfont-size:15px;\n}\n<\/style>\n<div  class='av-special-heading av-zttds7-b7bfddf8b2f7495f8ec4d4081a2fb912 av-special-heading-h3 custom-color-heading blockquote modern-quote  avia-builder-el-21  avia-builder-el-no-sibling '><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Experiences<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-xt9i07-a45ac91ee2c0fea3431949b075419a8b sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-xt9i07-a45ac91ee2c0fea3431949b075419a8b\">\n#top .flex_column_table.av-equal-height-column-flextable.av-xt9i07-a45ac91ee2c0fea3431949b075419a8b{\nmargin-top:0px;\nmargin-bottom:0px;\n}\n.flex_column.av-xt9i07-a45ac91ee2c0fea3431949b075419a8b{\nwidth:100%;\nmargin-left:0;\nborder-width:2px;\nborder-color:#3a4586;\nborder-style:solid;\npadding:30px 30px 30px 30px;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-xt9i07-a45ac91ee2c0fea3431949b075419a8b .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-xt9i07-a45ac91ee2c0fea3431949b075419a8b av_one_full  avia-builder-el-22  el_after_av_one_full  el_before_av_one_full  first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><section  class='av_textblock_section av-mhepxrbh-bb12c74220e7bfe58509af16ae3b621e '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p>2025-08~Associate Professor, Department of Applied Chemistry, National Yang Ming Chiao Tung University, Taiwan.<\/p>\n<p>2021-01~2025-07 Assistant Professor, Department of Applied Chemistry, National Yang Ming Chiao Tung University, Taiwan.<\/p>\n<p>2018-02-01~2021-01 Assistant Professor, Department of Applied Chemistry, National Chiao Tung University, Taiwan.<\/p>\n<p>2016-2017 Postdoctoral Scholar, Department of Chemistry, Duke University, Durham NC, USA. Advisor: Prof. Stephen L. Craig<\/p>\n<p>2010-2016 Graduate Student Researcher, Dept. Polymer Science and Engineering, University of Massachusetts Amherst, MA, USA. Advisor: Prof. Todd Emrick<\/p>\n<p>2007-2010 Undergraduate Research Assistant, Dept. Chemistry and Geochemistry, Colorado School of Mines , Golden CO, USA. Advisor: Stephen G. Boyes<\/p>\n<\/div><\/section><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-q1jmkn-ed311a892885555e413e1c060df4c794 sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-q1jmkn-ed311a892885555e413e1c060df4c794\">\n.flex_column.av-q1jmkn-ed311a892885555e413e1c060df4c794{\nwidth:100%;\nmargin-left:0;\nborder-radius:0 50px 0 0;\npadding:25px 30px 15px 30px;\nbackground-color:#ffeca0;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-q1jmkn-ed311a892885555e413e1c060df4c794 .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-q1jmkn-ed311a892885555e413e1c060df4c794 av_one_full  avia-builder-el-24  el_after_av_one_full  el_before_av_one_full  double-line-wy titlebox-mob first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-2g1phz-f0dcf4cdcc69ef716baf5fc42d9212bb\">\n#top .av-special-heading.av-2g1phz-f0dcf4cdcc69ef716baf5fc42d9212bb{\npadding-bottom:10px;\n}\nbody .av-special-heading.av-2g1phz-f0dcf4cdcc69ef716baf5fc42d9212bb .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-2g1phz-f0dcf4cdcc69ef716baf5fc42d9212bb .av-subheading{\nfont-size:15px;\n}\n<\/style>\n<div  class='av-special-heading av-2g1phz-f0dcf4cdcc69ef716baf5fc42d9212bb av-special-heading-h3 blockquote modern-quote  avia-builder-el-25  avia-builder-el-no-sibling '><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Honors<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-m15kxz-2d4cd7205f44bf45a1c741c374cacaa6 sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-m15kxz-2d4cd7205f44bf45a1c741c374cacaa6\">\n#top .flex_column_table.av-equal-height-column-flextable.av-m15kxz-2d4cd7205f44bf45a1c741c374cacaa6{\nmargin-top:0px;\nmargin-bottom:0px;\n}\n.flex_column.av-m15kxz-2d4cd7205f44bf45a1c741c374cacaa6{\nwidth:100%;\nmargin-left:0;\nborder-width:2px;\nborder-color:#ffeca0;\nborder-style:solid;\npadding:30px 30px 15px 30px;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-m15kxz-2d4cd7205f44bf45a1c741c374cacaa6 .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-m15kxz-2d4cd7205f44bf45a1c741c374cacaa6 av_one_full  avia-builder-el-26  el_after_av_one_full  el_before_av_one_full  first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><section  class='av_textblock_section av-l854mv-d618cc6da5cb589ea82cc540e7f04a41 '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><ul>\n<li>2018 Young Scholar Fellowship<\/li>\n<li>2018 PTOT Junior Chair Professorship<\/li>\n<\/ul>\n<\/div><\/section><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-jcfppz-de992169cd11ca7b8011d091f41cdb13 sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-jcfppz-de992169cd11ca7b8011d091f41cdb13\">\n.flex_column.av-jcfppz-de992169cd11ca7b8011d091f41cdb13{\nwidth:100%;\nmargin-left:0;\nborder-radius:0 50px 0 0;\npadding:25px 30px 15px 30px;\nbackground-color:#3a4586;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-jcfppz-de992169cd11ca7b8011d091f41cdb13 .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-jcfppz-de992169cd11ca7b8011d091f41cdb13 av_one_full  avia-builder-el-28  el_after_av_one_full  el_before_av_one_full  double-line-wy titlebox-mob first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1q24xz-b633edb4ae67473fa9c7e20783098264\">\n#top .av-special-heading.av-1q24xz-b633edb4ae67473fa9c7e20783098264{\npadding-bottom:10px;\ncolor:#ffffff;\n}\nbody .av-special-heading.av-1q24xz-b633edb4ae67473fa9c7e20783098264 .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-1q24xz-b633edb4ae67473fa9c7e20783098264 .special-heading-inner-border{\nborder-color:#ffffff;\n}\n.av-special-heading.av-1q24xz-b633edb4ae67473fa9c7e20783098264 .av-subheading{\nfont-size:15px;\n}\n<\/style>\n<div  class='av-special-heading av-1q24xz-b633edb4ae67473fa9c7e20783098264 av-special-heading-h3 custom-color-heading blockquote modern-quote  avia-builder-el-29  avia-builder-el-no-sibling '><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Publication<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n<div class='flex_column_table av-1lm8rr-78992aab854861ede910514ca0ee3129 sc-av_one_full av-equal-height-column-flextable'>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-1lm8rr-78992aab854861ede910514ca0ee3129\">\n#top .flex_column_table.av-equal-height-column-flextable.av-1lm8rr-78992aab854861ede910514ca0ee3129{\nmargin-top:0px;\nmargin-bottom:0px;\n}\n.flex_column.av-1lm8rr-78992aab854861ede910514ca0ee3129{\nwidth:100%;\nmargin-left:0;\nborder-width:2px;\nborder-color:#3a4586;\nborder-style:solid;\npadding:30px 30px 30px 30px;\n}\n#top .flex_column_table.av-equal-height-column-flextable.av-1lm8rr-78992aab854861ede910514ca0ee3129 .av-flex-placeholder{\nwidth:0%;\n}\n<\/style>\n<div  class='flex_column av-1lm8rr-78992aab854861ede910514ca0ee3129 av_one_full  avia-builder-el-30  el_after_av_one_full  el_before_av_one_full  first flex_column_table_cell av-equal-height-column av-align-top  column-top-margin'     ><style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-ev613b-fd0514abf63569144306af51244cf3d8\">\n#top .togglecontainer.av-ev613b-fd0514abf63569144306af51244cf3d8 p.toggler{\ncolor:#555555;\nbackground-color:#f8f8f8;\nborder-color:#ffffff;\n}\n#top .togglecontainer.av-ev613b-fd0514abf63569144306af51244cf3d8 p.toggler:not(.activeTitle):hover{\nbackground-color:#ffeca0;\n}\n#top .togglecontainer.av-ev613b-fd0514abf63569144306af51244cf3d8 p.toggler .toggle_icon{\ncolor:#005daf;\nborder-color:#005daf;\n}\n#top .togglecontainer.av-ev613b-fd0514abf63569144306af51244cf3d8 p.toggler .toggle_icon > span{\ncolor:#005daf;\nborder-color:#005daf;\n}\n#top .togglecontainer.av-ev613b-fd0514abf63569144306af51244cf3d8 .toggle_wrap .toggle_content{\ncolor:#555555;\nbackground-color:#f8f8f8;\nborder-color:#ffffff;\n}\n<\/style>\n<div  class='togglecontainer av-ev613b-fd0514abf63569144306af51244cf3d8 av-minimal-toggle  avia-builder-el-31  avia-builder-el-no-sibling ' >\n<section class='av_toggle_section av-burf9j-17c0e94d0577559f99a318d18d11c40f'  itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div role=\"tablist\" class=\"single_toggle\" data-tags=\"{All} \"  ><p id='toggle-toggle-id-1' data-fake-id='#toggle-id-1' class='toggler  av-title-above av-inherit-border-color'  itemprop=\"headline\"  role='tab' tabindex='0' aria-controls='toggle-id-1' data-slide-speed=\"200\" data-title=\"works\" data-title-open=\"\" data-aria_collapsed=\"Click to expand: works\" data-aria_expanded=\"Click to collapse: works\">works<span class=\"toggle_icon\"><span class=\"vert_icon\"><\/span><span class=\"hor_icon\"><\/span><\/span><\/p><div id='toggle-id-1' aria-labelledby='toggle-toggle-id-1' role='region' class='toggle_wrap  av-title-above'  ><div class='toggle_content invers-color av-inherit-border-color'  itemprop=\"text\" ><p>1.\u00a0\u00a0\u00a0\u00a0 Luc, V. S., Wang, L. A., Chen, Y. H., Yu, S. H., Juang, R. H., Lyu, L. M., &#8230; &amp; Chang, C. C. (2025). Photoinduced controlled radical polymerization mediated by BiOCl nanosheets under simulated solar light. European Polymer Journal, 114217.<\/p>\n<p>2.\u00a0\u00a0\u00a0\u00a0 Ko, C. H., Wang, H. C., Luc, V. S., Hsu, C. Y., Lin, Y., Huang, Y. W., &amp; Chang, C. C. (2025). Force-Accelerated Ring Opening of Episulfide by Pulsed Ultrasonication. Macromolecules.<\/p>\n<p>3.\u00a0\u00a0\u00a0\u00a0 Tsai, C. L., Lu, H. C., Tseng, C. C., Xue, Y. J., Hung, K. E., Wu, C. S., &#8230; &amp; Cheng, Y. J. (2025). Perfluorophenyl-Incorporated Ferrocene: A Non-Volatile Solid Additive for Boosting Efficiency and Stability in Organic Solar Cells. ACS Applied Materials &amp; Interfaces, 17(22), 32722-32731.<\/p>\n<p>4.\u00a0\u00a0\u00a0\u00a0 Yang, R., Zhang, C., Zhang, X., Liu, J., Chang, C. C., Wu, X., &#8230; &amp; Huang, W. (2025). Non-volatile capacitive memory based on spiropyran-derived copolymers for multi-level and ultralow-power data storage and protection. Journal of Materials Chemistry C, 13(12), 6052-6062.<\/p>\n<p>5.\u00a0\u00a0\u00a0\u00a0 Haque, N., Chang, H. C., Chang, C. C., &amp; Davis, C. S. (2025). Visualizing fiber end geometry effects on stress distribution in composites using mechanophores. Soft Matter, 21(4), 573-584.<\/p>\n<p>6.\u00a0\u00a0\u00a0\u00a0 Kao, C.T., Yang, F.W., Wu, M.C., Hung, T.H., Hu, C.W., Chen, C.H., Liou, P.C., Mai, T.L., Chang, C.C., Lin, T.Y. and Chen, Y.L., 2024. Systematic synthesis and identification of monolignol pathway metabolites. New Phytologist, 244(4), pp.1143-1167.<\/p>\n<p>7.\u00a0\u00a0\u00a0\u00a0 Mekhemer, I.M., Chiu, Y.C., Elsenety, M.M., Elewa, A.M., Dorrah, D.M., Huynh, K.D.G., Hoang, D.C.K., Chang, C.C. and Chou, H.H., 2024. Solar-driven photocatalytic hydrogen production thiophene-quinoxaline-based polymer dots with tunable molecular weight. Polymer Journal, 56(11), pp.1079-1088.<\/p>\n<p>8.\u00a0\u00a0\u00a0\u00a0 Huynh, T.M.H., Luc, V.S., Chiang, M.R., Weng, W.H., Chang, C.W., Chiang, W.H., Liu, Y.C., Chuang, C.Y., Chang, C.C. and Hu, S.H., 2024. Programmed Lung Metastasis Immunotherapy via Cascade\u2010Responsive Cell Membrane\u2010Mimetic Copolymer\u2010Wrapped Nanoraspberry\u2010Mediated Elesclomol\u2010Copper Delivery. Advanced Functional Materials, 34(34), p.2401806.<\/p>\n<p>9.\u00a0\u00a0\u00a0\u00a0 Gohl, J. A., Wiley, T. J., Chang, H. C., Chang, C. C., &amp; Davis, C. S. (2023). Stress quantification in a composite matrix via mechanophores. Frontiers in Soft Matter, 3, 1125163.<\/p>\n<p>10.\u00a0 Roberts, T., Zhan, S., Chang, H. C., Chang, C. C., Beaudoin, S., Hutchens, S., &amp; Davis, C. (2024, March). Quantification of Stress Fields Ahead of a Cutting Blade via Mechanophores. In APS March Meeting Abstracts (Vol. 2024, pp. T32-009).<\/p>\n<p>11.\u00a0 Chang, H. C., Liang, M. C., Luc, V. S., Davis, C., &amp; Chang, C. C. (2024). Mechanochemical Reactivity of a 1, 2, 4\u2010Triazoline\u20103, 5\u2010dione\u2010Anthracene Diels\u2010Alder Adduct. Chemistry\u2013An Asian Journal, 19(1), e202300850.<\/p>\n<p>12.\u00a0 Pal, A., Ganguly, A., Wei, P. H., Barman, S. R., Chang, C. C., &amp; Lin, Z. H. (2024). Construction of triboelectric series and chirality detection of amino acids using triboelectric nanogenerator. Advanced Science, 11(4), 2307266.<\/p>\n<p>13.\u00a0 Chen, C. T., Weng, C. C., Fan, K. P., Barman, S. R., Pal, A., Liu, C. B., &#8230; &amp; Chang, C. C. (2023). Guanidinium-functionalized polymer dielectrics for triboelectric bacterial detection. ACS Applied Materials &amp; Interfaces, 16(1), 1502-1510.<\/p>\n<p>14.\u00a0 Haque, N., Gohl, J., Chang, C. C., Chang, H. C., &amp; Davis, C. S. (2023). Quantifying Localized Stresses in the Matrix of a Fiber\u2010Reinforced Composite via Mechanophores. Macromolecular Chemistry and Physics, 224(24), 2300298.<\/p>\n<p>15.\u00a0 Gautam, B., Huang, M. R., Lin, C. C., Chang, C. C., &amp; Chen, J. T. (2023). A viable approach for polymer upcycling of polystyrene (styrofoam) wastes to produce high value predetermined organic compounds. Polymer Degradation and Stability, 217, 110528.<\/p>\n<p>16.\u00a0 Luc, V. S., Lin, C. C., Wang, S. Y., Lin, H. P., Li, B. R., Chou, Y. N., &amp; Chang, C. C. (2023). Antifouling properties of amine-oxide-containing zwitterionic polymers. Biomacromolecules, 24(11), 5467-5477.<\/p>\n<p>17.\u00a0 Xing, T., Chang, C. C., &amp; Xu, W. (2023). Thermoplastic azobenzene polyurethanes with both efficient photomediated migration and excellent mechanical strength. ACS Applied Polymer Materials, 5(8), 6212-6221.<\/p>\n<p>18.\u00a0 Gohl, J. A., Wiley, T. J., Chang, H. C., Chang, C. C., &amp; Davis, C. S. (2023). Stress quantification in a composite matrix via mechanophores. Frontiers in Soft Matter, 3, 1125163.<\/p>\n<p>19.\u00a0 Xiaowei Chen, Shiya Zheng, Baoshuai Liang, Xiaosong Wu, Donghui Wang, Yu Dong, Wei Huang, Yifan Liu, Xiaolan Yu, Jinghui Shen, Shiyu Feng, Chia-Chih Chang, and Weiguo Huang. (2023). Realizing a Brain-Like Transistor Memory with Triple Data-Storage Modes by One Single Smart Molecular Dopant in the Dielectric Layer. Chemistry of Materials, 35(7), 2808-2819.<\/p>\n<p>20.\u00a0 Nie, H., Busireddy, M.R., Shih, H.M., Ko, C.W., Chen, J.T., Chang, C.C. and Hsu, C.S., 2022. High-performance inverted organic solar cells via the incorporation of thickness-insensitive and low-temperature-annealed nonconjugated polymers as electron transport materials. ACS Applied Materials &amp; Interfaces, 15(1), pp.1718-1725.<\/p>\n<p>21.\u00a0 Cheng, Y. H., Kirschner, A. Y., Chang, C. C., He, Z., Nassr, M., Emrick, T., &amp; Freeman, B. D. (2022). Surface modification of ultrafiltration membranes with 1, 4-benzoquinone and polyetheramines to improve fouling resistance. ACS Applied Materials &amp; Interfaces, 14(46), 52390-52401.<\/p>\n<p>22.\u00a0 Rencheck, M. L., Mackey, B. T., Hu, Y. Y., Chang, C. C., Sangid, M. D., &amp; Davis, C. S. (2022). Identifying internal stresses during mechanophore activation. Advanced Engineering Materials, 24(4), 2101080.<\/p>\n<p>23.\u00a0 Gu\u017eauskas, M., Narbutaitis, E., Volyniuk, D., Baryshnikov, G. V., Minaev, B. F., \u00c5gren, H., &#8230; &amp; Grazulevicius, J. V. (2021). Polymorph acceptor-based triads with photoinduced TADF for UV sensing. Chemical Engineering Journal, 425, 131549.<\/p>\n<p>24.\u00a0 Shen, J., Feng, S., Ling, Y., Chang, C. C., Huang, C., Wu, X., &#8230; &amp; Huang, W. (2021). Responsive zwitterionic polymers with humidity and voltage dual-switching for multilevel date encryption and anticounterfeiting. Chemistry of Materials, 33(4), 1477-1488.<\/p>\n<p>25.\u00a0 Rencheck, M., Mackey, B., Chang, C. C., Sangid, M., &amp; Davis, C. (2021). A Methodology for Calibrating Mechanophore Activation Intensity to Applied Stress. In APS March Meeting Abstracts (Vol. 2021, pp. J03-007).<\/p>\n<p>26.\u00a0 Wu, R. C., Tang, C. W., Chang, M. B., Chang, C. C., Wang, C. C., &amp; Wang, C. B. (2020). Morphology-controlled fabrication of Co3O4 catalysts and performance towards low temperature CO oxidation. Catalysis Letters, 150(12), 3523-3532.<\/p>\n<p>27.\u00a0 Liu, C. H., Liu, M. H., Liu, Y. H., Lu, C. J., Chang, C. C., Wang, C. C., &amp; Wang, C. B. (2020). Study on Pt (Sn)\/TiO2-C as Anodic Catalysts for Direct Ethanol Fuel Cell. International Journal of Electrochemical Science, 15(12), 12395-12409.<\/p>\n<p>28.\u00a0 Wang, W. C., Lin, Y. W., Peng, S. H., Chuang, C. T., Chang, C. C., &amp; Hsu, C. S. (2020). A strategy of designing near-infrared porphyrin-based non-fullerene acceptors for panchromatic organic solar cells. Organic Electronics, 86, 105899.<\/p>\n<p>29.\u00a0 Lin, Y., Kouznetsova, T. B., Chang, C. C., &amp; Craig, S. L. (2020). Enhanced polymer mechanical degradation through mechanochemically unveiled lactonization. Nature communications, 11(1), 4987.<\/p>\n<p>30.\u00a0 Fang, Z. X., Chu, C. W., Tsai, C. C., Chang, C. W., Cheng, M. H., Chang, C. C., &amp; Chen, J. T. (2020). Rayleigh\u2010Instability\u2010Induced Transformation for Confined Polystyrene Nanotubes Prepared Using the Solvent\u2010Vapor\u2010Induced Wetting Method. Macromolecular Materials and Engineering, 305(1), 1900465.<\/p>\n<p>31.\u00a0 Chen, T. W., Peng, K. L., Lin, Y. W., Su, Y. J., Ma, K. J., Hong, L., &#8230; &amp; Hsu, C. S. (2020). A chlorinated nonacyclic carbazole-based acceptor affords over 15% efficiency in organic solar cells. Journal of Materials Chemistry A, 8(3), 1131-1137.<\/p>\n<p>32.\u00a0 Wu, S. T., Huang, C. Y., Weng, C. C., Chang, C. C., Li, B. R., &amp; Hsu, C. S. (2019). Rapid prototyping of an open-surface microfluidic platform using wettability-patterned surfaces prepared by an atmospheric-pressure plasma jet. Acs Omega, 4(15), 16292-16299.<\/p>\n<p>33.\u00a0 Chen, T. W., Chang, C. C., Hsiao, Y. T., Chan, C., Hong, L., Zhong, L., &#8230; &amp; Hsu, C. S. (2019). Single-junction organic solar cell containing a fluorinated heptacyclic carbazole-based ladder-type acceptor affords over 13% efficiency with solution-processed cross-linkable fullerene as an interfacial layer. ACS Applied Materials &amp; Interfaces, 11(34), 31069-31077.<\/p>\n<p>34.\u00a0 Yeh, Y. M., Huang, C. H., Peng, S. H., Chang, C. C., &amp; Hsu, C. S. (2019). Synthesis of novel conjugated polymers based on benzo [1, 2-d: 4, 5-d\u2032]-bis ([1, 2, 3] triazole) for applications in organic field-effect transistors. Polymer Chemistry, 10(12), 1471-1479.<\/p>\n<p>35.\u00a0 Chen, T. W., Hsiao, Y. T., Lin, Y. W., Chang, C. C., Chuang, W. T., Li, Y., &amp; Hsu, C. S. (2019). Fluorinated heptacyclic carbazole-based ladder-type acceptors with aliphatic side chains for efficient fullerene-free organic solar cells. Materials Chemistry Frontiers, 3(5), 829-835.<\/p>\n<p>36.\u00a0 Lin, Y., Chang, C. C., &amp; Craig, S. L. (2019). Mechanical generation of isocyanate by mechanically induced retro [2+ 2] cycloaddition of a 1, 2-diazetidinone mechanophore. Organic Chemistry Frontiers, 6(7), 1052-1057.<\/p>\n<p>37.\u00a0 Li, C. H., Chang, C. C., Hsiao, Y. H., Peng, S. H., Su, Y. J., Heo, S. W., &#8230; &amp; Hsu, C. S. (2018). Porphyrin-containing polymer as a superior blue light-absorbing additive to afford high-J sc ternary solar cells. ACS applied materials &amp; interfaces, 11(1), 1156-1162.<\/p>\n<p>38.\u00a0 Lin, Y., Barbee, M. H., Chang, C. C., &amp; Craig, S. L. (2018). Regiochemical effects on mechanophore activation in bulk materials. Journal of the American Chemical Society, 140(46), 15969-15975.<\/p>\n<p>39.\u00a0 Chang, C. C., Tao, J. H., Tsai, C. E., Cheng, Y. J., &amp; Hsu, C. S. (2018). Cross-linked triarylamine-based hole-transporting layer for solution-processed PEDOT: PSS-free inverted perovskite solar cells. ACS Applied Materials &amp; Interfaces, 10(25), 21466-21471.<\/p>\n<p>40.\u00a0 Kirschner, A. Y., Chang, C. C., Kasemset, S., Emrick, T., &amp; Freeman, B. D. (2017). Fouling-resistant ultrafiltration membranes prepared via co-deposition of dopamine\/zwitterion composite coatings. Journal of Membrane Science, 541, 300-311.<\/p>\n<p>41.\u00a0 Kolewe, K. W., Dobosz, K. M., Rieger, K. A., Chang, C. C., Emrick, T., &amp; Schiffman, J. D. (2016). Antifouling electrospun nanofiber mats functionalized with polymer zwitterions. ACS applied materials &amp; interfaces, 8(41), 27585-27593.<\/p>\n<p>42.\u00a0 Bai, Y., Chang, C. C., Choudhary, U., Bolukbasi, I., Crosby, A. J., &amp; Emrick, T. (2016). Functional droplets that recognize, collect, and transport debris on surfaces. Science Advances, 2(10), e1601462.<\/p>\n<p>43.\u00a0 Chang, C. C., Kolewe, K. W., Li, Y., Kosif, I., Freeman, B. D., Carter, K. R., &#8230; &amp; Emrick, T. (2016). Underwater superoleophobic surfaces prepared from polymer zwitterion\/dopamine composite coatings. Advanced materials interfaces, 3(6), 1500521.<\/p>\n<p>44.\u00a0 Bai, Y., Chang, C. C., Zhao, X., Ribbe, A., Bolukbasi, I., Szyndler, M. J., &#8230; &amp; Emrick, T. (2016). Mechanical restoration of damaged polymer films by \u201crepair\u2010and\u2010go\u201d. Advanced Functional Materials, 26(6), 857-863.<\/p>\n<p>45.\u00a0 Chang, C. C., Letteri, R., Hayward, R. C., &amp; Emrick, T. (2015). Functional sulfobetaine polymers: synthesis and salt-responsive stabilization of oil-in-water droplets. Macromolecules, 48(21), 7843-7850.<\/p>\n<p>46.\u00a0 Chen, D., Chang, C. C., Cooper, B., Silvers, A., Emrick, T., &amp; Hayward, R. C. (2015). Photopatternable biodegradable aliphatic polyester with pendent benzophenone groups. Biomacromolecules, 16(10), 3329-3335.<\/p>\n<p>47.\u00a0 Hu, G., Chang, C. C., &amp; Emrick, T. (2014, August). Zwitterionic and reverse zwitterionic polymers: Synthesis and triggered response. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 248). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<p>48.\u00a0 Kosif, I., Chang, C. C., Bai, Y., Ribbe, A. E., Balazs, A. C., &amp; Emrick, T. (2014). Picking up nanoparticles with functional droplets. Advanced Materials Interfaces, 1(5), 1400121.<\/p>\n<p>49.\u00a0 Chang, C. C., &amp; Emrick, T. (2014). Functional polyolefins containing disulfide and phosphoester groups: synthesis and orthogonal degradation. Macromolecules, 47(4), 1344-1350.<\/p>\n<p>50.\u00a0 Chang, C. C., &amp; Emrick, T. (2013, September). Redox responsive degradable polyolefins prepared by ROMP. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 246). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<p>51.\u00a0 Silvers, A. L., Chang, C. C., &amp; Emrick, T. (2012). Functional aliphatic polyesters and nanoparticles prepared by organocatalysis and orthogonal grafting chemistry. Journal of Polymer Science Part A: Polymer Chemistry, 50(17), 3517-3529.<\/p>\n<p>52.\u00a0 Letteri, R., Kratz, K., Sauers, A., Chang, C. C., &amp; Emrick, T. (2012, August). New functional hydrophilic and amphiphilic structures and methods for encapsulation and delivery. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 244). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<p>53.\u00a0 Silvers, A. L., Chang, C. C., Parrish, B., &amp; Emrick, T. (2012). Strategies in aliphatic polyester synthesis for biomaterial and drug delivery applications. In Degradable Polymers and Materials: Principles and Practice (2nd Edition) (pp. 237-254). American Chemical Society.<\/p>\n<p>54.\u00a0 Boyes, S. G., Rowe, M. D., Chang, C. C., Sanchez, T. J., Hatakeyama, W., Serkova, N. J., &#8230; &amp; Kim, F. J. (2012). Polymer-Modified Nanoparticles as Targeted MR Imaging Agents. In Multifunctional Nanoparticles for Drug Delivery Applications: Imaging, Targeting, and Delivery (pp. 173-198). Boston, MA: Springer US.<\/p>\n<p>55.\u00a0 Smith, P. P., Rowe, M. D., Chang, C. C. G., &amp; Boyes, S. G. (2011, August). Polymer modified gold nanoparticles as targeted contrast agents for micro-CT imaging. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 242). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<p>56.\u00a0 Boyes, S. G., Rowe, M. D., Kern, M., Zhu, L., Smith, P. P., Oates, R. P., &amp; Chang, C. C. G. (2011, August). RAFT polymerization for the surface modification of nanoparticles. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 242). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<p>57.\u00a0 Boyes, S. G., Rowe, M. D., Chang, C. C., Thamm, D. H., Kraft, S. L., Harmon Jr, J. F., &#8230; &amp; Sumerlin, B. S. (2010). Surface Modification of Positive Contrast Nanoparticle Agents with RAFT Polymers Towards the Targeted Imaging and Treatment of Cancer. In Polymeric Delivery of Therapeutics (pp. 65-101). American Chemical Society.<\/p>\n<p>58.\u00a0 Rowe, M. D., Chang, C. C., Thamm, D. H., Kraft, S. L., Harmon Jr, J. F., Vogt, A. P., &#8230; &amp; Boyes, S. G. (2009). Tuning the magnetic resonance imaging properties of positive contrast agent nanoparticles by surface modification with RAFT polymers. Langmuir, 25(16), 9487-9499.<\/p>\n<p>59.\u00a0 Chang, C. C. G., Rowe, M. D., &amp; Boyes, S. G. (2009, March). Polymer modified gold\/gadolinium nanoparticles for targeted multimodal imaging and photothermal treatment. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 237). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<p>60.\u00a0 Rowe, M. D., Boyes, S. G., &amp; Chang, C. C. G. (2009, March). Polymer modified gadolinium nanoparticles as theragnostic devices for the targeted imaging and treatment of cancer. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 237). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.<\/p>\n<\/div><\/div><\/div><\/section>\n<\/div><\/div><\/div><!--close column table wrapper. Autoclose: 1 -->\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-6h1m5z-9376e747a350cf399dbcce12e03bacdf\">\n.flex_column.av-6h1m5z-9376e747a350cf399dbcce12e03bacdf{\npadding:30px 30px 15px 30px;\nbackground-color:#e9f3ff;\n}\n<\/style>\n<div  class='flex_column av-6h1m5z-9376e747a350cf399dbcce12e03bacdf av_one_full  avia-builder-el-32  el_after_av_one_full  avia-builder-el-last  first flex_column_div  column-top-margin'     ><p>\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-3uzrqf-b94e701de95c20e9032eac8d241b49d6\">\n#top .av-special-heading.av-3uzrqf-b94e701de95c20e9032eac8d241b49d6{\npadding-bottom:10px;\n}\nbody .av-special-heading.av-3uzrqf-b94e701de95c20e9032eac8d241b49d6 .av-special-heading-tag .heading-char{\nfont-size:25px;\n}\n.av-special-heading.av-3uzrqf-b94e701de95c20e9032eac8d241b49d6 .av-subheading{\nfont-size:15px;\n}\n<\/style>\n<div  class='av-special-heading av-3uzrqf-b94e701de95c20e9032eac8d241b49d6 av-special-heading-h3 blockquote modern-quote  avia-builder-el-33  el_before_av_image  avia-builder-el-first '><h3 class='av-special-heading-tag '  itemprop=\"headline\"  >Research Highlights<\/h3><div class=\"special-heading-border\"><div class=\"special-heading-inner-border\"><\/div><\/div><\/div><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mheq76yx-3fdf460c27d7954b28eee1b30b33385f\">\n.avia-image-container.av-mheq76yx-3fdf460c27d7954b28eee1b30b33385f img.avia_image{\nbox-shadow:none;\n}\n.avia-image-container.av-mheq76yx-3fdf460c27d7954b28eee1b30b33385f .av-image-caption-overlay-center{\ncolor:#ffffff;\n}\n<\/style>\n<div  class='avia-image-container av-mheq76yx-3fdf460c27d7954b28eee1b30b33385f av-styling-no-styling avia-align-center  avia-builder-el-34  el_after_av_heading  el_before_av_textblock '   itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\" ><div class=\"avia-image-container-inner\"><div class=\"avia-image-overlay-wrap\"><img decoding=\"async\" fetchpriority=\"high\" class='wp-image-14936 avia-img-lazy-loading-not-14936 avia_image ' src=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/1.jpg\" alt='This work investigates BiOCl-mediated photopolymerization of methyl acrylate, 2-hydroxyethyl acrylate, oligo(ethylene glycol) methyl ether methacrylate, and 4-acryloylmorpholine and N,N-dimethylacrylamide under simulated solar irradation. BiOCl can facilitate photoinduced radical polymerization in the presence of trithiocarbonate- and dithioester-based chain transfer agents to afford polymers with controllable molecular weight and narrow dispersity.' title='1'  height=\"390\" width=\"864\"  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/1.jpg 864w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/1-300x135.jpg 300w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/1-768x347.jpg 768w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/1-705x318.jpg 705w\" sizes=\"(max-width: 864px) 100vw, 864px\" \/><\/div><\/div><\/div><br \/>\n<section  class='av_textblock_section av-mheq1nvr-62e4ea3f4520036d0c8dd7ae11c141cf '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p>This work investigates BiOCl-mediated photopolymerization of methyl acrylate, 2-hydroxyethyl acrylate, oligo(ethylene glycol) methyl ether methacrylate, and 4-acryloylmorpholine and N,N-dimethylacrylamide under simulated solar irradation. BiOCl can facilitate photoinduced radical polymerization in the presence of trithiocarbonate- and dithioester-based chain transfer agents to afford polymers with controllable molecular weight and narrow dispersity.<\/p>\n<\/div><\/section><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mheq9bfe-472b56c359b8ebdc7c7e176531aacbb6\">\n.avia-image-container.av-mheq9bfe-472b56c359b8ebdc7c7e176531aacbb6 img.avia_image{\nbox-shadow:none;\n}\n.avia-image-container.av-mheq9bfe-472b56c359b8ebdc7c7e176531aacbb6 .av-image-caption-overlay-center{\ncolor:#ffffff;\n}\n<\/style>\n<div  class='avia-image-container av-mheq9bfe-472b56c359b8ebdc7c7e176531aacbb6 av-styling-no-styling avia-align-center  avia-builder-el-36  el_after_av_textblock  el_before_av_textblock '   itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\" ><div class=\"avia-image-container-inner\"><div class=\"avia-image-overlay-wrap\"><img decoding=\"async\" fetchpriority=\"high\" class='wp-image-14938 avia-img-lazy-loading-not-14938 avia_image ' src=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/2.jpg\" alt='Covalent polymer mechanochemistry uses mechanical force in polymer chains to alter reaction pathways and influence stereoselectivity. This study examines episulfides with alkyl, ester, and phenyl substituents under pulsed ultrasonication. Episulfides with alkyl and phenyl groups undergo C\u2013C bond cleavage, forming reactive intermediates for cis\u2013trans isomerization and cycloaddition, whereas ester-substituted episulfides remain inactive.' title='2'  height=\"272\" width=\"733\"  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/2.jpg 733w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/2-300x111.jpg 300w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/2-705x262.jpg 705w\" sizes=\"(max-width: 733px) 100vw, 733px\" \/><\/div><\/div><\/div><br \/>\n<section  class='av_textblock_section av-4qb65j-ba7269d98a35cffe704c7ad623c59c6d '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p>Covalent polymer mechanochemistry uses mechanical force in polymer chains to alter reaction pathways and influence stereoselectivity. This study examines episulfides with alkyl, ester, and phenyl substituents under pulsed ultrasonication. Episulfides with alkyl and phenyl groups undergo C\u2013C bond cleavage, forming reactive intermediates for cis\u2013trans isomerization and cycloaddition, whereas ester-substituted episulfides remain inactive.<\/p>\n<\/div><\/section><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mheqajri-185d3783abb77c718d7f2ffbf9ed186d\">\n.avia-image-container.av-mheqajri-185d3783abb77c718d7f2ffbf9ed186d img.avia_image{\nbox-shadow:none;\n}\n.avia-image-container.av-mheqajri-185d3783abb77c718d7f2ffbf9ed186d .av-image-caption-overlay-center{\ncolor:#ffffff;\n}\n<\/style>\n<div  class='avia-image-container av-mheqajri-185d3783abb77c718d7f2ffbf9ed186d av-styling-no-styling avia-align-center  avia-builder-el-38  el_after_av_textblock  el_before_av_textblock '   itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\" ><div class=\"avia-image-container-inner\"><div class=\"avia-image-overlay-wrap\"><img decoding=\"async\" fetchpriority=\"high\" class='wp-image-14940 avia-img-lazy-loading-not-14940 avia_image ' src=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/3.jpg\" alt='Force-responsive molecules that fluoresce under stress enable damage detection. We report a mechanophore, TAD-An, that undergoes a retro-Diels\u2013Alder reaction under ultrasonication or compression. Compared to MAL-An, TAD-An degrades faster due to its weaker C\u2013N bond (1.59\u00d710\u207b\u2075 vs. 1.40\u00d710\u207b\u2075 min\u207b\u00b9). Embedded in crosslinked polymers, TAD-An serves as a fluorescent probe for visualizing mechanical damage.' title='3'  height=\"328\" width=\"746\"  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/3.jpg 746w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/3-300x132.jpg 300w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/3-705x310.jpg 705w\" sizes=\"(max-width: 746px) 100vw, 746px\" \/><\/div><\/div><\/div><br \/>\n<section  class='av_textblock_section av-mheqa0yb-ec533b544b027148c0576276cfc68a93 '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p>Force-responsive molecules that fluoresce under stress enable damage detection. We report a mechanophore, TAD-An, that undergoes a retro-Diels\u2013Alder reaction under ultrasonication or compression. Compared to MAL-An, TAD-An degrades faster due to its weaker C\u2013N bond (1.59\u00d710\u207b\u2075 vs. 1.40\u00d710\u207b\u2075 min\u207b\u00b9). Embedded in crosslinked polymers, TAD-An serves as a fluorescent probe for visualizing mechanical damage.<\/p>\n<\/div><\/section><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mheqbvb9-61befab70a059c4cd272ff1f80fc10f9\">\n.avia-image-container.av-mheqbvb9-61befab70a059c4cd272ff1f80fc10f9 img.avia_image{\nbox-shadow:none;\n}\n.avia-image-container.av-mheqbvb9-61befab70a059c4cd272ff1f80fc10f9 .av-image-caption-overlay-center{\ncolor:#ffffff;\n}\n<\/style>\n<div  class='avia-image-container av-mheqbvb9-61befab70a059c4cd272ff1f80fc10f9 av-styling-no-styling avia-align-center  avia-builder-el-40  el_after_av_textblock  el_before_av_textblock '   itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\" ><div class=\"avia-image-container-inner\"><div class=\"avia-image-overlay-wrap\"><img decoding=\"async\" fetchpriority=\"high\" class='wp-image-14942 avia-img-lazy-loading-not-14942 avia_image ' src=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/4.jpg\" alt='This study presents an antimicrobial poly(norbornene) polymer, 2Gdm, with guanidinium side groups for bacterial detection using triboelectric nanogenerators (TENGs) and nanosensors (TENSs). Bacterial binding alters the polymer\u2019s triboelectric output via electrostatic interactions. The crosslinked form, X-2Gdm, detects E. coli and S. pneumoniae (4\u00d710\u2075\u20134\u00d710\u2078 CFU\/mL; LOD = 10\u2076 CFU\/mL). Increased bacterial adsorption reduces surface potential and signal strength, enabling rapid, self-powered bacterial sensing.' title='4'  height=\"412\" width=\"425\"  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/4.jpg 425w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/4-206x200.jpg 206w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/4-36x36.jpg 36w\" sizes=\"(max-width: 425px) 100vw, 425px\" \/><\/div><\/div><\/div><br \/>\n<section  class='av_textblock_section av-mheqcb5i-751c89070fabdfcea71806bf8a419e25 '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p>This study presents an antimicrobial poly(norbornene) polymer, 2Gdm, with guanidinium side groups for bacterial detection using triboelectric nanogenerators (TENGs) and nanosensors (TENSs). Bacterial binding alters the polymer\u2019s triboelectric output via electrostatic interactions. The crosslinked form, X-2Gdm, detects E. coli and S. pneumoniae (4\u00d710\u2075\u20134\u00d710\u2078 CFU\/mL; LOD = 10\u2076 CFU\/mL). Increased bacterial adsorption reduces surface potential and signal strength, enabling rapid, self-powered bacterial sensing.<\/p>\n<\/div><\/section><br \/>\n\n<style type=\"text\/css\" data-created_by=\"avia_inline_auto\" id=\"style-css-av-mheqcvv8-6d25ef033b9ceeb6cb19a97a8054249e\">\n.avia-image-container.av-mheqcvv8-6d25ef033b9ceeb6cb19a97a8054249e img.avia_image{\nbox-shadow:none;\n}\n.avia-image-container.av-mheqcvv8-6d25ef033b9ceeb6cb19a97a8054249e .av-image-caption-overlay-center{\ncolor:#ffffff;\n}\n<\/style>\n<div  class='avia-image-container av-mheqcvv8-6d25ef033b9ceeb6cb19a97a8054249e av-styling-no-styling avia-align-center  avia-builder-el-42  el_after_av_textblock  el_before_av_textblock '   itemprop=\"image\" itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/ImageObject\" ><div class=\"avia-image-container-inner\"><div class=\"avia-image-overlay-wrap\"><img decoding=\"async\" fetchpriority=\"high\" class='wp-image-14944 avia-img-lazy-loading-not-14944 avia_image ' src=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/5.jpg\" alt='Biofouling limits the performance of medical and sensing devices, and PEG alternatives are needed due to rising allergy concerns. This study introduces poly(amine oxide) (PAO) as a biocompatible antifouling material. Alkyl-substituted, photo-cross-linked PAO coatings on silicon surfaces resist protein adsorption, bacterial attachment, and blood cell adhesion, showing strong potential for biomedical use.' title='5'  height=\"380\" width=\"727\"  itemprop=\"thumbnailUrl\" srcset=\"https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/5.jpg 727w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/5-300x157.jpg 300w, https:\/\/dac.nycu.edu.tw\/wp-content\/uploads\/2024\/11\/5-705x369.jpg 705w\" sizes=\"(max-width: 727px) 100vw, 727px\" \/><\/div><\/div><\/div><br \/>\n<section  class='av_textblock_section av-mheqd9np-cb03b446d9426b6a2ca6198b2d8bf8b1 '   itemscope=\"itemscope\" itemtype=\"https:\/\/schema.org\/CreativeWork\" ><div class='avia_textblock'  itemprop=\"text\" ><p>Biofouling limits the performance of medical and sensing devices, and PEG alternatives are needed due to rising allergy concerns. This study introduces poly(amine oxide) (PAO) as a biocompatible antifouling material. Alkyl-substituted, photo-cross-linked PAO coatings on silicon surfaces resist protein adsorption, bacterial attachment, and blood cell adhesion, showing strong potential for biomedical use.<\/p>\n<\/div><\/section><\/p><\/div>\n","protected":false},"excerpt":{"rendered":"<p>Chia-Chih Chang \u5f35\u4f73\u667a<br \/>\nResponsive and Adaptive Materials, Tailorable Surface<br \/>\nTel | 03-5712121 #56532<br \/>\nEmail | cchang113ac@nycu.edu.tw<br \/>\nOffice | TKB R714A<\/p>\n","protected":false},"author":20,"featured_media":16883,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"tags":[],"portfolio_entries":[198,196],"class_list":["post-16881","portfolio","type-portfolio","status-publish","has-post-thumbnail","hentry","portfolio_entries-01-en","portfolio_entries--en"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Associate Professor Chia-Chih Chang - 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