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Templateless, Plating‐Free Fabrication of Flexible Transparent Electrodes with Embedded Silver Mesh by Electric‐Field‐Driven Microscale 3D Printing and Hybrid Hot Embossing

Xiaoyang ZhuShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaMingyang LiuShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaXimeng QiShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaHongke LiShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaYuan‐Fang ZhangDigital Manufacturing and Design Centre Singapore University of Technology and Design Singapore 487372 SingaporeZhenghao LiShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaZilong PengCollege of Engineering The Ohio State University Columbus OH 43210 USAJianjun YangShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaLei QianDepartment of Industrial and Systems Engineering The Hong Kong Polytechnic University Hung Hom Hong Kong 999077 ChinaQuan XuShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaNairui GouShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 ChinaJiankang HeState Key Laboratory for Manufacturing System Engineering Xi'an Jiaotong University Xi'an 710049 ChinaDichen LiState Key Laboratory for Manufacturing System Engineering Xi'an Jiaotong University Xi'an 710049 ChinaHongbo LanShandong Engineering Research Center for Additive Manufacturing Qingdao University of Technology Qingdao 266520 China
2021en
ABI

Аннотация

Abstract Flexible transparent electrodes (FTEs) with an embedded metal mesh are considered a promising alternative to traditional indium tin oxide (ITO) due to their excellent photoelectric performance, surface roughness, and mechanical and environmental stability. However, great challenges remain for achieving simple, cost‐effective, and environmentally friendly manufacturing of high‐performance FTEs with embedded metal mesh. Herein, a maskless, templateless, and plating‐free fabrication technique is proposed for FTEs with embedded silver mesh by combining an electric‐field‐driven (EFD) microscale 3D printing technique and a newly developed hybrid hot‐embossing process. The final fabricated FTE exhibits superior optoelectronic properties with a transmittance of 85.79%, a sheet resistance of 0.75 Ω sq −1 , a smooth surface of silver mesh ( R a ≈ 18.8 nm) without any polishing treatment, and remarkable mechanical stability and environmental adaptability with a negligible increase in sheet resistance under diverse cyclic tests and harsh working conditions (1000 bending cycles, 80 adhesion tests, 120 scratch tests, 100 min ultrasonic test, and 72 h chemical attack). The practical viability of this FTE is successfully demonstrated with a flexible transparent heater applied to deicing. The technique proposed offers a promising fabrication strategy with a cost‐effective and environmentally friendly process for high‐performance FTE.

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