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首页> 外文期刊>Chemistry: A European journal >Proton- and redox-controlled switching of photo- and electrochemiluminescence in thiophenyl-substituted boron-dipyrromethene dyes
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Proton- and redox-controlled switching of photo- and electrochemiluminescence in thiophenyl-substituted boron-dipyrromethene dyes

机译:噻吩取代的硼二吡咯亚甲基染料中质子和氧化还原控制的光化学发光和电化学发光的转换

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摘要

A luminescent molecular switch in which the active thiol/disulfide switching element is attached to a meso-phenyl-substituted boron-dipyrromethene (BDP) chromophore as the signalling unit is presented. The combination of these two functional units offers great versatility for multimodal switching of luminescence: I) deprotonation/protonation of the thiol/thiolate moiety allows the highly fluorescent meso-p-thiophenol-BDP and its non-fluorescent thiolate analogue to be chemically and reversibly interconverted, 2) electrochemical oxidation of the monomeric dyes yields the fluorescent disulfide-bridged bichromophoric dimer, also in a fully reversible process, and 3) besides conventional photoexcitation, the well separated redox potentials of the BDP also allow the excited BDP state to be generated electrochemically (i.e., processes 1) and 2) can be employed to control both photo- and electrochemiluminescence (ECL) of the BDP). The paper introduces and characterizes the various states of the switch and discusses the underlying mechanisms. Investigation of the ortho analogue of the dimer provided insight into potential chromophore-chromophore interactions in such bichromophoric architectures in both the ground and the excited state. Comparison of the optical and redox properties of the two disulfide dimers further revealed structural requirements both for redox switches and for ECL-active molecular ensembles. By employing thiol/disulfide switching chemistry and BDP luminescence features, it was possible to create a prototype molecular ensemble that shows both fully reversible proton- and redox-gated electrochemiluminescence.
机译:提出了一种发光分子开关,其中活性硫醇/二硫键开关元件连接到内苯基取代的硼二吡咯二烯(BDP)发色团作为信号单元。这两个功能单元的结合为发光的多峰转换提供了极大的通用性:I)巯基/硫醇盐部分的去质子化/质子化使得高荧光度的中对-对-硫酚-BDP及其非荧光硫醇盐类似物具有化学可逆性相互转化; 2)单体染料的电化学氧化也可在完全可逆的过程中产生荧光二硫桥连的双发色二聚体,以及3)除常规的光激发外,BDP的良好分离的氧化还原电势还允许生成激发的BDP状态电化学方法(即方法1和2)可用于控制BDP的光致发光和电化学致发光(ECL)。本文介绍并描述了开关的各种状态,并讨论了其潜在机制。对二聚体的邻位类似物的研究提供了在这样的双发色体系中在基态和激发态下潜在的发色团-发色团相互作用的见解。两个二硫键二聚体的光学和氧化还原特性的比较进一步揭示了氧化还原开关和ECL活性分子集合的结构要求。通过使用硫醇/二硫化物转换化学和BDP发光特征,可以创建一个原型分子集合体,该分子集合体显示出完全可逆的质子和氧化还原门控的电化学发光。

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