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Novel bisthienylethene containing ferrocenyl-substituted naphthalimide: A photo- and redox multi-addressable molecular switch

机译:新型的含二茂铁基取代的萘二甲酰亚胺的双联噻吩乙烯:光和氧化还原的多寻址分子开关

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摘要

A new photochromic bisthienylethene system (BTE-NAFc) is reported in which the ferrocene unit (Fc) is incorporated into a naphthalimide chromophore as the central ethene bridging unit. The incorporated Fc unit in the photochromic system of BTE-NAFc has several effects on optical properties, such as fluorescence-modulation through photoinduced electron transfer (PET), a decrease in the photochromic cyclization quantum yield, and a selective two-step oxidation process. The ability to drive ring-opening and ring-closing reactions with a secondary redox-modulation provides increased functionality to the photochromic system. Based on these meaningful photo- and redox-modulation properties, five unprecedented multi-addressable states (BTE-NAFc, BTE-NAFc ~+, c-BTE-NAFc, c-BTE-NAFc ~+, and BTE ~+-NAFc ~+) and gated photochromism are successfully obtained within the unimolecular BTE platform, thus providing deeper insight into photochromic systems as multifunctional outputs.
机译:报道了一种新的光致变色联苯撑乙烯系统(BTE-NAFc),其中将二茂铁单元(Fc)掺入到萘二甲酰亚胺发色团中作为中心乙烯桥连单元。 BTE-NAFc的光致变色系统中并入的Fc单元对光学性能有多种影响,例如通过光致电子转移(PET)进行的荧光调制,光致变色环化量子产率的降低以及选择性的两步氧化过程。通过二次氧化还原调节来驱动开环和闭环反应的能力为光致变色系统提供了增强的功能。基于这些有意义的光和氧化还原调制特性,五个前所未有的多重寻址状态(BTE-NAFc,BTE-NAFc〜+,c-BTE-NAFc,c-BTE-NAFc〜+和BTE〜+ -NAFc〜 +)和门控光致变色已在单分子BTE平台内成功获得,从而提供了对作为多功能输出的光致变色系统的更深入了解。

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