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具有高电致变色和储能性能的直接生长聚酰亚胺共价有机骨架薄膜

Directly Grown Polyimide Covalent Organic Framework Films with High Electrochromic and Energy-Storage Performance.

作者信息

Xie Haolin, Qiu Qingqing, Li Huan, Liu Ping, Balla Putrakumar, Qi Xiaopeng, Liang Tongxiang, Zeng Jinming

机构信息

College of Rare Earths, Jiangxi University of Science and Technology, Ganzhou 341000, PR China.

State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Guangzhou 510640, PR China.

出版信息

ACS Appl Mater Interfaces. 2025 Jan 8;17(1):2180-2189. doi: 10.1021/acsami.4c16702. Epub 2024 Dec 19.

Abstract

Two dimensional covalent organic framework (2D COF) films based on triphenylamine are considered to be promising electrochromic and energy-storage materials owing to their interlayer π-π electron delocalization, one-dimensional (1D) nanopores, and stable chemical structures. Triphenylamine-based 2D COF electrochromic films, nevertheless, rarely exhibit transparency and high optical contrast, which severely limited the scope of their application. In this work, two directly grown triphenylamine-based polyimide 2D COF films, TAPA-PMDA and TAPA-NTCDA PI COF, were prepared through solvothermal technology. Their morphologies were assembled into hierarchical nanoporous structures in the form of strips and gravel-like nanograins, respectively. Both the TAPA-PMDA and TAPA-NTCDA PI COF films exhibited a transparent bleached state and high optical contrast. Their optical contrasts were 77.6% at 752 nm and 60.4% at 708 nm, respectively. Interestingly, the TAPA-NTCDA PI COF film could exhibit multicolors (transparent, red-gray, and blue-gray) through regulating the contributions of the electron transition from HOMO to SOMO and HOMO-1 to SOMO of TPA. In addition, the TAPA-PMDA and TAPA-NTCDA PI COF films also displayed fast switching and colored/bleached times of 7.3/2.7 and 5.3/8.1 s, respectively. Remarkably, the TAPA-PMDA PI COF film also demonstrated large specific capacitance and excellent charge-discharge rate capabilities. The directly grown polyimide 2D COF films are enormously promising for high-performance electrochromic and energy-storage materials.

摘要

基于三苯胺的二维共价有机框架(2D COF)薄膜因其层间π-π电子离域、一维(1D)纳米孔和稳定的化学结构,被认为是有前景的电致变色和储能材料。然而,基于三苯胺的2D COF电致变色薄膜很少表现出透明度和高光学对比度,这严重限制了它们的应用范围。在这项工作中,通过溶剂热技术制备了两种直接生长的基于三苯胺的聚酰亚胺2D COF薄膜,即TAPA-PMDA和TAPA-NTCDA PI COF。它们的形态分别组装成带状和砾石状纳米颗粒形式的分级纳米多孔结构。TAPA-PMDA和TAPA-NTCDA PI COF薄膜均呈现出透明的漂白状态和高光学对比度。它们在752 nm处的光学对比度分别为77.6%,在708 nm处为60.4%。有趣的是,通过调节TPA从HOMO到SOMO以及从HOMO-1到SOMO的电子跃迁贡献,TAPA-NTCDA PI COF薄膜可以呈现多种颜色(透明、红灰色和蓝灰色)。此外,TAPA-PMDA和TAPA-NTCDA PI COF薄膜还表现出快速切换,着色/漂白时间分别为7.3/2.7和5.3/8.1 s。值得注意的是,TAPA-PMDA PI COF薄膜还表现出大的比电容和优异的充放电速率性能。直接生长的聚酰亚胺2D COF薄膜在高性能电致变色和储能材料方面极具前景。

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