Kumar Silori Gaurav, Chien Szu-Chia, Lin Li-Chiang, Ho Kuo-Chuan
Department of Chemical Engineering, National Taiwan University, 10617, Taipei, Taiwan.
Department of Chemical and Materials Engineering, National Central University, 320317, Taoyuan, Taiwan.
Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202416046. doi: 10.1002/anie.202416046. Epub 2024 Oct 29.
Covalent organic frameworks (COFs) are of massive interest due to their potential application spanning diverse fields such as gas storage and separation, catalysis, drug delivery systems, sensing, and organic electronics. In view of their application-oriented quest, the field of electrochromism marked a significant stride with the reporting of the first electrochromic COF in 2019 [J. Am. Chem. Soc. 2019, 141, 19831-19838]. Since then, new and novel COF structures with electrochromic features (denoted as COFs) have been searched continuously. Yet, only a handful of COFs have been constructed to date. A closer look at these reports suggests that multielectrochromism (showing at least three redox color states) in a COF assembly has only been achieved once, manifested through three-state electrochromism [Angew. Chem. 2021, 133, 12606-1261]. Herein, we report four-state electrochromism in tris(4-aminophenyl)amine-terephthalaldehyde (TAPA-PDA)-based COF constructed through the metal-catalyst free Schiff base approach. The four-state (orange, pear, green, and cyan) electrochromism demonstrated by the TAPA-PDA COF opens several futuristic avenues for COF's end use in flip-flop logic gates, intelligent windows, decorative displays, and energy-saving devices.
共价有机框架(COFs)因其在气体储存与分离、催化、药物递送系统、传感以及有机电子学等多个领域的潜在应用而备受关注。鉴于其面向应用的探索,电致变色领域在2019年首次报道电致变色COF时取得了重大进展[《美国化学会志》2019年,141卷,19831 - 19838页]。从那时起,具有电致变色特性的新型COF结构(简称为COFs)不断被探索。然而,迄今为止仅构建了少数几种COFs。仔细研究这些报道表明,COF组件中的多电致变色现象(呈现至少三种氧化还原颜色状态)仅实现过一次,通过三态电致变色得以体现[《德国应用化学》2021年,133卷,12606 - 1261页]。在此,我们报道了通过无金属催化剂的席夫碱方法构建的基于三(4 - 氨基苯基)胺 - 对苯二甲醛(TAPA - PDA)的COF中的四态电致变色现象。TAPA - PDA COF所展示的四态(橙色、梨色、绿色和青色)电致变色为COF在触发器逻辑门、智能窗户、装饰显示屏和节能设备等最终用途方面开辟了几条未来的途径。