Oxidative-Reductive Near-Infrared Electrochromic Switching Enabled by Porous Vertically Stacked Multilayer Devices

被引:11
|
作者
Pankow, Robert M. [1 ]
Harbuzaru, Alexandra [2 ]
Zheng, Ding [1 ]
Kerwin, Brendan [1 ]
Forti, Giacomo [1 ]
Duplessis, Isaiah D. D. [1 ]
Musolino, Bryan [3 ]
Ponce Ortiz, Rocio P. [2 ]
Facchetti, Antonio [1 ,4 ]
Marks, Tobin J. J. [1 ]
机构
[1] Northwestern Univ, Mat Res Ctr, Dept Chem, Evanston, IL 60208 USA
[2] Univ Malaga, Fac Sci, Dept Phys Chem, Malaga 29071, Spain
[3] IC Advisor, Washington, DC 20002 USA
[4] Flexterra Corp, Skokie, IL 60077 USA
关键词
POLYMER; PERFORMANCE; FILMS;
D O I
10.1021/jacs.3c03702
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Here, we demonstrate for the first time the ability ofa porous pi-conjugated semiconducting polymer film to enable facile electrolytepenetration through vertically stacked redox-active polymer layers,thereby enabling electrochromic switching between p-type and/or n-typepolymers. The polymers P1 and P2, with structuresdiketopyrrolopyrrole (DPP)-pi(bridge)-3,4,-ethylenedioxythiophene(EDOT)-pi(bridge) [pi(bridge) = 2,5-thienylfor P1 and pi(bridge) = 2,5-thiazolyl for P2] are selected as the p-type polymers and N2200 (a known naphthalenediimide-dithiophene semiconductor) asthe n-type polymer. Single-layer porous and dense (control) polymerfilms are fabricated and extensively characterized using optical microscopy,atomic force microscopy, scanning electron microscopy, and grazingincidence wide-angle X-ray scattering. The semiconducting films arethen incorporated into single and multilayer electrochromic devices(ECDs). It is found that when a p-type (P2) porous toplayer is used in a multilayer ECD, it enables electrolyte penetrationto the bottom layer, enabling oxidative electrochromic switching ofthe P1 bottom layer at low potentials (+0.4 V versus+1.2 V with dense P2). Importantly, when using a porous P1 as the top layer with an n-type N2200 bottomlayer, dynamic oxidative-reductive electrochromic switchingis also realized. These results offer a proof of concept for developmentof new types of multilayer electrochromic devices where precise controlof the semiconductor film morphology and polymer electronic structureis essential.
引用
收藏
页码:13411 / 13419
页数:9
相关论文
共 32 条
  • [1] Near-Infrared Electrochromic and Chiroptical Switching Materials: Design, Synthesis, and Characterization of Chiral Organogels Containing Stacked Naphthalene Diimide Chromophores
    Zheng, Jia
    Qiao, Wenqiang
    Wan, Xinhua
    Gao, Jian Ping
    Wang, Zhi Yuan
    CHEMISTRY OF MATERIALS, 2008, 20 (19) : 6163 - 6168
  • [2] Regional performance targets for transparent near-infrared switching electrochromic window glazings
    DeForest, Nicholas
    Shehabi, Arman
    Garcia, Guillermo
    Greenblatt, Jeffery
    Masanet, Eric
    Lee, Eleanor S.
    Selkowitz, Stephen
    Milliron, Delia J.
    BUILDING AND ENVIRONMENT, 2013, 61 : 160 - 168
  • [3] Experimental and Theoretical Investigation of a New Rapid Switching Near-Infrared Electrochromic Conjugated Polymer
    Wu, Han-Yu
    Wang, Kun-Li
    Jiang, Jyh-Chiang
    Liaw, Der-Jang
    Lee, Kueir-Rarn
    Lai, Juin-Yih
    Chen, Ci-Liang
    JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2010, 48 (18) : 3913 - 3923
  • [4] Near-Infrared Responsive Conjugated Polymers to 1.5 μm and Beyond: Synthesis and Electrochromic Switching Application
    Tang, Tao
    Ding, Guoqiang
    Lin, Tingting
    Chi, Hong
    Liu, Chen
    Lu, Xuehong
    Wang, FuKe
    He, Chaobin
    MACROMOLECULAR RAPID COMMUNICATIONS, 2013, 34 (05) : 431 - 436
  • [5] Band Tailoring Enabled Perovskite Devices for X-Ray to Near-Infrared Photodetection
    He, Yi-Chu
    Dun, Guan-Hua
    Deng, Jun
    Peng, Jia-Li
    Qin, Ken
    Zhang, Jia-He
    Geng, Xiang-Shun
    Zhang, Min-Shu
    Wang, Ze-Shu
    Xie, Yan
    Bai, Zhao-Qiang
    Xie, Dan
    Tian, He
    Yang, Yi
    Ren, Tian-Ling
    ADVANCED SCIENCE, 2025, 12 (09)
  • [6] Two New Near-Infrared Switchable Electrochromic Bithiophenes Derivatives Based on 4-Methoxytriphenylamine Unit and Their Application for Electrochromic Devices
    Zhao, Jinsheng
    Yang, Xiujuan
    Wang, Shuhao
    Yu, Junsheng
    ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY, 2014, 3 (07) : R121 - R130
  • [7] Visible to near-infrared broadband electrochromic switching of π-extended viologen exhibiting highly efficient photothermal conversion
    Gopal, Balamurugan
    Pal, Raksha
    Park, Jong S.
    CHEMICAL ENGINEERING JOURNAL, 2024, 480
  • [8] Enhanced Optical Contrast and Switching in Near-Infrared Electrochromic Devices by Optimizing Conjugated Polymer Oligo(Ethylene Glycol) Sidechain Content and Gel Electrolyte Composition
    Pankow, Robert M.
    Kerwin, Brendan
    Cho, Yongjoon
    Jeong, Seonghun
    Forti, Giacomo
    Musolino, Bryan
    Yang, Changduk
    Facchetti, Antonio
    Marks, Tobin J.
    ADVANCED FUNCTIONAL MATERIALS, 2024, 34 (02)
  • [9] Study of electrochromic characteristics in the near-infrared region of electrochromic devices based on solution-processed amorphous WO3 films
    Ding, Jingjing
    Liu, Zhen
    Wei, Aixiang
    Chen, T. P.
    Zhang, Haiyan
    MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 2018, 88 : 73 - 78
  • [10] Efficient Optoelectronic Devices Enabled by Near-Infrared Organic Semiconductors with a Photoresponse beyond 1050 nm
    Zhang, Yi
    Wei, Qingyun
    He, Zhilong
    Wang, Yan
    Shan, Tong
    Fu, Yanyan
    Guo, Xiaojun
    Zhong, Hongliang
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (27) : 31066 - 31074