Zhang Rong-Zhen, Liu Hui, Xin Cheng-Long, Han Ning, Ma Chao-Qun, Yu Shengsheng, Wang Yue-Bo, Xing Ling-Bao
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.
J Colloid Interface Sci. 2023 Dec;651:894-901. doi: 10.1016/j.jcis.2023.07.133. Epub 2023 Jul 22.
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.
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。