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用于可切换银镜的聚(离子液体)电解质。

Poly(ionic liquid) Electrolytes for a Switchable Silver Mirror.

作者信息

Hou Xiao, Wang Zhenyong, Zheng Zhiqiang, Guo Jiangna, Sun Zhe, Yan Feng

机构信息

Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, Department of Polymer Science and Engineering, College of Chemistry, Chemical Engineering and Materials Science , Soochow University , Suzhou 215123 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Jun 5;11(22):20417-20424. doi: 10.1021/acsami.9b05001. Epub 2019 May 22.

Abstract

Imidazolium-type small-molecule ionic liquids (ILs) and their corresponding poly(ionic liquid) (PIL) homopolymers were synthesized and applied to reversible electrochemical mirrors (REMs). The effects of alkyl chain length of the carbon chains at the N3 position and cation charge density (mono- and bis-imidazolium) on the electrochromic properties of Ag-based REMs were investigated by analyzing their electrodeposition and spectral properties. Longer alkyl chains and higher charge densities decreased the size and resulted in a more uniform distribution of Ag nanoparticles. Compared with IL-based liquid electrolytes, the PIL-based gel electrolytes formed smaller and denser electrodeposited metallic Ag nanoparticles because of their higher viscosity. These findings were used to guide fabrication of a 50 cm mirror dynamic window and flexible display. Because of several unique properties of PILs, the PIL-based REM exhibits fast switching speeds, superb cycling durability, small particle sizes, and uniform electrodeposited Ag nanoparticle films. These results make dynamic windows based on PIL electrolytes promising and competitive alternatives to traditional electrochromic windows.

摘要

合成了咪唑型小分子离子液体(ILs)及其相应的聚(离子液体)(PIL)均聚物,并将其应用于可逆电化学镜(REM)。通过分析基于银的REM的电沉积和光谱特性,研究了N3位碳链的烷基链长度和阳离子电荷密度(单咪唑和双咪唑)对其电致变色性能的影响。较长的烷基链和较高的电荷密度减小了尺寸,并导致银纳米颗粒分布更均匀。与基于IL的液体电解质相比,基于PIL的凝胶电解质由于其较高的粘度而形成更小、更致密的电沉积金属银纳米颗粒。这些发现被用于指导50厘米镜面动态窗口和柔性显示器的制造。由于PILs的几个独特性质,基于PIL的REM表现出快速的切换速度、出色的循环耐久性、小颗粒尺寸和均匀的电沉积银纳米颗粒薄膜。这些结果使得基于PIL电解质的动态窗口成为传统电致变色窗口有前景且具有竞争力的替代品。

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