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苝二酰亚胺/氧化锌混合薄膜的高电致变色性能:一条高效、节能且绿色的途径。

High Electrochromic Performance of Perylene Bisimide/ZnO Hybrid Films: An Efficient, Energy-Saving, and Green Route.

作者信息

Tao Bowen, Ouyang Mi, Hua Qiqi, Kong Chenwen, Zhang Jinlu, Li Weijun, Bai Ru, Liu Junlei, Lv Xiaojing, Zhang Cheng

机构信息

International Sci. & Tech. Cooperation Base of Energy Materials and Application, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, P. R. China.

Center for Integrated Spintronics, Hangzhou Dianzi University, Hangzhou 310018, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 15;15(10):13730-13739. doi: 10.1021/acsami.2c22029. Epub 2023 Feb 28.

Abstract

The composite or hybrid of organic and inorganic materials is one of the common ways to improve the properties of photoelectric functional materials. Perylene bisimide (PBI) derivatives, as large π-conjugated organic small molecules, are a class of photoelectric functional materials with excellent performance. However, there were few reports on PBIs in the electrochromic field due to the difficulty of film-forming caused by their generally poor solubility. Here, water-soluble PBI derivatives (PDI-COOH and PCl-COOH) were synthesized. The hybrid films (ZnO@PDI-COOH/PCl-COOH) formed by the coordination bond and π-π stacking were prepared via a simple solution immersion method. Fourier transform infrared spectrometry and X-ray diffraction as well as scanning electron microscopy, and energy-dispersive spectrometry results further confirmed the formation of hybrid films. At the same time, electrochemical and spectroelectrochemical analyses revealed that the films have reversible redox activity and cathodic electrochromic properties, which can change from orange-red to purple. The ZnO@PDI-COOH hybrid film formed by coordination bonds exhibits fast switching times (1.7 s colored time and 2.6 s bleached time), good stability (retain 92.41% contrast after 2400 cycles), a low driving voltage (-0.6-0 V), and a high coloration efficiency (276.14 cm/C). The corresponding electrochromic devices also have good electrochromic properties. On this basis, a large-area (100 mm × 100 mm) electrochromic display device with fine patterning was fabricated by using the hybrid film, and the device shows excellent reversible electrochromic performance. This idea of constructing organic-inorganic hybrid materials with coordination bonds provides an effective, energy-saving, and green method, which is expected to promote the large-scale and fine production of electrochromic materials.

摘要

有机材料与无机材料的复合材料或杂化材料是改善光电功能材料性能的常用方法之一。苝二酰亚胺(PBI)衍生物作为大π共轭有机小分子,是一类性能优异的光电功能材料。然而,由于其溶解性普遍较差导致成膜困难,在电致变色领域关于PBI的报道较少。在此,合成了水溶性PBI衍生物(PDI-COOH和PCl-COOH)。通过简单的溶液浸渍法制备了由配位键和π-π堆积形成的杂化膜(ZnO@PDI-COOH/PCl-COOH)。傅里叶变换红外光谱、X射线衍射以及扫描电子显微镜和能谱分析结果进一步证实了杂化膜的形成。同时,电化学和光谱电化学分析表明,该膜具有可逆的氧化还原活性和阴极电致变色性能,颜色可从橙红色变为紫色。由配位键形成的ZnO@PDI-COOH杂化膜具有快速的开关时间(着色时间1.7 s,褪色时间2.6 s)、良好的稳定性(2400次循环后保留92.41%的对比度)、低驱动电压(-0.6 - 0 V)和高着色效率(276.14 cm²/C)。相应的电致变色器件也具有良好的电致变色性能。在此基础上,利用该杂化膜制备了具有精细图案的大面积(100 mm×100 mm)电致变色显示器件,该器件表现出优异的可逆电致变色性能。这种通过配位键构建有机-无机杂化材料的思路提供了一种有效、节能且绿色的方法,有望推动电致变色材料的大规模和精细化生产。

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