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Highly robust, transparent, and conductive films based on AgNW-C nanowires for flexible smart windows

纳米线 材料科学 导电体 纳米技术 导电的 光电子学 透明导电膜 复合材料
作者
Tingting Hao,Shen Wang,Hongbo Xü,Xiang Zhang,Junying Xue,Shikun Liu,Ying Song,Yao Li,Jiupeng Zhao
出处
期刊:Applied Surface Science [Elsevier]
卷期号:559: 149846-149846 被引量:28
标识
DOI:10.1016/j.apsusc.2021.149846
摘要

• A facile approach to fabricate AgNW-C core-shell nanowires by a one-pot method. • A uniform amorphous carbon shell coating improves the stability of AgNWs. • Hydroxyls on the surface of AgNWs enhance the adhesion between AgNW-C and PET. • Flexible electrochromic WO 3 /AgNW-C/PET-based device has been constructed. • The device shows promising stability and mechanical flexibility. Flexible transparent conductive films (FTCFs) have attracted tremendous concern because it is a key component of next generation electronics and optoelectronic devices. Silver nanowires (AgNWs) random networks have become the most promising candidates for FTCFs, with high transmittance, low sheet resistance, and excellent mechanical flexibility. However, there are many barriers to the application of FTCFs based on AgNWs, such as easy oxidization and weak adhesion to the substrates. Here, we developed a facile approach to fabricate AgNW-C core–shell nanowires derived from the carbonization of glucose by a one-pot solvothermal method. A uniform amorphous carbon shell coating improves the chemical stability of AgNWs and the hydroxyls on the surface of the nanowires enhance the adhesion to the substrate. The AgNW-C/poly(ethylene terephthalate) (PET) transparent conductive film shows excellent robustness when subjected to bending (ΔR/R 0 ≈ 2.8% after bending 2000 times). Besides, the conductivity of AgNW-C/PET film remains relatively stable after 100 peeling-off cycles by a 3 M tape test. A flexible electrochromic device (FCD) has also been constructed based on the AgNW-C/PET film, which shows promising stability and mechanical flexibility due to the remarkable electrochemical stability and mechanical strength of the AgNW-C/PET films. The results present the significant potential applications of the flexible transparent device based on AgNW-C/PET film for many fields in the future.
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