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通过主客体相互作用构建用于光氧化反应和光捕获的聚集诱导发光光敏剂。

Construction of aggregation-induced emission photosensitizers through host-guest interactions for photooxidation reaction and light-harvesting.

作者信息

Zhang Rong-Zhen, Liu Hui, Xin Cheng-Long, Han Ning, Ma Chao-Qun, Yu Shengsheng, Wang Yue-Bo, Xing Ling-Bao

机构信息

School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255000, PR China.

Shandong Center for Disease Control and Prevention, Jinan 255014, PR China.

出版信息

J Colloid Interface Sci. 2023 Dec;651:894-901. doi: 10.1016/j.jcis.2023.07.133. Epub 2023 Jul 22.

DOI:10.1016/j.jcis.2023.07.133
PMID:37573735
Abstract

In the present work, we have designed and synthesized a triphenylamine modified cyanophenylenevinylene derivative (TPCI), which can self-assembly with cucurbit[6]uril (CB[6]) and cucurbit[8]uril (CB[8]) through host-guest interactions to form supramolecular complexes (TPCI-CB[6]) and supramolecular polymers (TPCI-CB[8]) in the aqueous solution. The supramolecular assemblies of TPCI-CB[6] and TPCI-CB[8] not only exhibited high singlet oxygen (O) production efficiency as photosensitizers, but also realized the application in the construction of artificial light-harvesting systems due to the excellent fluorescence properties in the aqueous solution. The production efficiency of O has been effectively improved after the addition of CB[6] and CB[8] for TPCI, which were applied as efficient photosensitizers in the photooxidation reactions of thioanisole and its derivatives with the highest yield of 98% in the aqueous solution. The excellent fluorescence properties of TPCI-CB[6] and TPCI-CB[8] can be used as energy donors in artificial light-harvesting systems with energy acceptors sulforhodamine 101 (SR101) and cyanine dye 5 (Cy5), in which one-step energy transfer processes of TPCI-CB[6]+SR101 and TPCI-CB[8]+Cy5, and a two-step sequential energy transfer process of TPCI-CB[6]+SR101+Cy5 were constructed to simulate the natural photosynthesis system.

摘要

在本工作中,我们设计并合成了一种三苯胺修饰的氰基苯撑乙烯衍生物(TPCI),它可以通过主客体相互作用与葫芦[6]脲(CB[6])和葫芦[8]脲(CB[8])自组装,在水溶液中形成超分子复合物(TPCI-CB[6])和超分子聚合物(TPCI-CB[8])。TPCI-CB[6]和TPCI-CB[8]的超分子组装体不仅作为光敏剂表现出高单线态氧(O)产生效率,而且由于在水溶液中具有优异的荧光性质,还实现了在人工光捕获系统构建中的应用。对于TPCI,加入CB[6]和CB[8]后单线态氧的产生效率得到了有效提高,它们在硫代苯甲醚及其衍生物的光氧化反应中作为高效光敏剂,在水溶液中的最高产率为98%。TPCI-CB[6]和TPCI-CB[8]优异的荧光性质可作为人工光捕获系统中与能量受体磺基罗丹明101(SR101)和花菁染料5(Cy5)的能量供体,其中构建了TPCI-CB[6]+SR101和TPCI-CB[8]+Cy5的一步能量转移过程以及TPCI-CB[6]+SR101+Cy5的两步连续能量转移过程来模拟自然光合作用系统。

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