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具有强附着力的高水分散性胶原蛋白/聚苯胺纳米复合材料,用于具有增强循环稳定性的电致变色薄膜。

Highly water dispersible collagen/polyaniline nanocomposites with strong adhesion for electrochromic films with enhanced cycling stability.

作者信息

Zhao Yinghui, Liu Wentao, Bai Xue, Huang Wenhuan, Gu Yingchun, Chen Sheng, Lan Jianwu

机构信息

Functional Polymer Materials Laboratory, College of Biomass Science and Engineering, Sichuan University, Chengdu 610065, China.

Chunliang Oil Production Plant of Shengli Oilfield, Sinopec, BinZhou City 256504, Shandong, China.

出版信息

Int J Biol Macromol. 2023 Jun 30;241:124657. doi: 10.1016/j.ijbiomac.2023.124657. Epub 2023 Apr 28.

Abstract

Electrochromic materials have attracted extensive attention recently due to their versatile applications in smart windows, displays, antiglare rearview mirrors, and so on. Herein we report a new electrochromic composite prepared from collagen and polyaniline (PANI) through a self-assembly assisted co-precipitation method. The introduction of hydrophilic collagen macromolecules into PANI nanoparticles makes the collagen/PANI (C/PANI) nanocomposite obtain excellent dispersibility in water, which provides good environmental-friendly solution processability. Furthermore, the C/PANI nanocomposite exhibits excellent film-forming properties and adhesion to the ITO glass matrix. The resulting electrochromic film of the C/PANI nanocomposite displays significantly improved cycling stability compared with the pure PANI film after 500 coloring-bleaching cycles. On the other hand, the composite films also exhibit yellow, green and blue polychromatic properties at different applied voltages and high average transmittance at the bleaching state. The C/PANI electrochromic material illustrates scaling potential for the application of electrochromic devices.

摘要

近年来,电致变色材料因其在智能窗户、显示器、防眩光后视镜等方面的广泛应用而备受关注。在此,我们报道了一种通过自组装辅助共沉淀法由胶原蛋白和聚苯胺(PANI)制备的新型电致变色复合材料。将亲水性胶原蛋白大分子引入聚苯胺纳米颗粒中,使胶原蛋白/聚苯胺(C/PANI)纳米复合材料在水中具有优异的分散性,这提供了良好的环境友好型溶液加工性能。此外,C/PANI纳米复合材料表现出优异的成膜性能和对ITO玻璃基质的附着力。在500次着色-漂白循环后,C/PANI纳米复合材料的电致变色膜与纯聚苯胺膜相比,循环稳定性显著提高。另一方面,复合膜在不同施加电压下还表现出黄色、绿色和蓝色的多色特性,并且在漂白状态下具有高平均透过率。C/PANI电致变色材料展示了在电致变色器件应用中的规模化潜力。

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