Improved electrochromic performance of polyaniline film based on well-ordered 3D micro array

F. Yue, Y. Ma, J. Liu, W. Xu, F. Li, F. Zhang, J. Shi, X.D. Huang
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Abstract

Polyaniline (PANI) with a well-ordered 3D micro array is prepared by using MEMS processes and its electrochromic properties are investigated by comparison with a 2D planar one. The 3D sample has similar response speeds to the 2D one but displays (~1.2×) higher specific capacitance than the latter due to its more PANI content under the same footprint. The 3D micro array is also helpful to enhance the mechanical strength of the PANI film against repeated electrochemical cycling. Moreover, because the 3D array is well-ordered and also its feature size (~4 μm) is comparable to the infrared wavelength, strong interaction occurs between the infrared light and the structure; consequently, the 3D sample shows much larger emissivity modulation (~0.3) than the 2D one (~0.1).
基于有序三维微阵列改进聚苯胺薄膜电致变色性能
采用MEMS工艺制备了具有有序三维微阵列的聚苯胺(PANI),并与平面二维微阵列进行了电致变色性能对比研究。3D样品的响应速度与2D样品相似,但由于在相同的占地面积下含有更多的聚苯胺,因此其比电容比2D样品高(~1.2倍)。三维微阵列还有助于提高聚苯胺膜的机械强度,防止反复电化学循环。此外,由于三维阵列有序且其特征尺寸(~4 μm)与红外波长相当,因此红外光与结构之间存在强烈的相互作用;因此,三维样品的发射率调制(~0.3)比二维样品(~0.1)大得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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