Nanoarchitectonics of two organic cocrystals with zwitterionic ligands: Structures, photochromic and chemochromic properties

IF 3.5 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Journal of Solid State Chemistry Pub Date : 2025-01-23 DOI:10.1016/j.jssc.2025.125221
Xinyuan Zhang , Yingxue Liu , Rui Liu , Ziheng Xu , Qunxi Dai , Jie Ma , Yanli Gai , Kecai Xiong
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Abstract

Nanoarchitectonics of two organic cocrystals constituted by zwitterionic ligands 1,1′-bis(4-carboxyphenyl)-(4,4′-bipyridinium) dichloride (H2bcbpCl2) and 1,1′-bis(3,5-dicarboxyphenyl)-4,4′-bipyridinium dichloride (H4bdcbpCl2), has been successfully synthesized and characterized. Hydrogen bonding interactions play an important role in the formation of supramolecular slipped-stacking architecture of both compounds. It is worth noting that these two compounds can quickly change from brown to green upon exposure to ethylamine, indicating that the nucleophilic attack of ethylamine molecules on the viologen moieties in both compounds contributes to the formation of free viologen radicals. In addition, compound 1 also exhibits photochromic property, and, its color rapidly and noticeably changes from brown to green under the irradiation of xenon light due to the generation of free viologen radicals. However, compound 2 lacks photochromic property due to its relatively long distance of electron donor and acceptor.

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两种两性离子配体有机共晶的纳米结构:结构、光致变色和化学致变色性质
成功地合成了由两性离子配体1,1′-双(4-羧基苯基)-(4,4′-联吡啶)二氯化体(H2bcbpCl2)和1,1′-双(3,5-二羧基苯基)-4,4′-联吡啶二氯化体(H4bdcbpCl2)组成的两种有机共晶的纳米结构并进行了表征。氢键相互作用在这两种化合物的超分子滑移堆积结构的形成中起着重要作用。值得注意的是,这两种化合物在暴露于乙胺后可以迅速从棕色变为绿色,这表明乙胺分子对两种化合物中的紫素基团的亲核攻击有助于形成自由的紫素自由基。此外,化合物1还具有光致变色特性,在氙光照射下,由于游离的紫外光自由基的产生,化合物1的颜色迅速而明显地由棕色变为绿色。而化合物2由于其电子给体和电子受体距离较远,因而缺乏光致变色性质。
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来源期刊
Journal of Solid State Chemistry
Journal of Solid State Chemistry 化学-无机化学与核化学
CiteScore
6.00
自引率
9.10%
发文量
848
审稿时长
25 days
期刊介绍: Covering major developments in the field of solid state chemistry and related areas such as ceramics and amorphous materials, the Journal of Solid State Chemistry features studies of chemical, structural, thermodynamic, electronic, magnetic, and optical properties and processes in solids.
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