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Sensitized triplet–triplet annihilation upconversion in water and its application to photochemical transformations

机译:水中敏化三重态-三重态an灭上转换及其在光化学转化中的应用

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摘要

Sensitized triplet–triplet annihilation (TTA) is a promising mechanism for solar energy conversion, but so far its application has been practically completely limited to organic solvents and self-assembled or solid state systems. Combining water-soluble ruthenium complex–pyrene dyads with particularly long excited-state lifetimes as sensitizers and highly fluorescent commercial anthracenes as acceptors/annihilators, we were able to achieve green-to-violet upconversion with unprecedented quantum yields in pure water. Compared to the only known system exploiting sensitized TTA in homogeneous aqueous solution, we improve the overall photon upconversion efficiency by a full order of magnitude and present the very first example for a chemical transformation on a laboratory scale via upconversion in water. Specifically, we found that a thermodynamically challenging carbon–chlorine bond activation can be driven by green photons from an inexpensive continuous wave light source in the presence of dissolved oxygen. Our study is thus potentially relevant in the context of cleaning water from halogenated (toxic) contaminants and for sustainable photochemistry in the most environmentally friendly solvent.
机译:敏化三重态-三重态an灭(TTA)是一种有前途的太阳能转化机制,但到目前为止,其应用实际上已完全限于有机溶剂和自组装或固态系统。通过将水溶性钌络合物-双加合物与特别长的激发态寿命(作为敏化剂)和高度荧光的商用蒽(作为受体/ hil灭剂)结合使用,我们能够实现纯净水中空前的量子产率的绿色到紫色的上转换。与唯一的在均相水溶液中利用敏化TTA的已知系统相比,我们将整体光子上转换效率提高了整整一个数量级,并提出了实验室规模通过水上转换进行化学转化的第一个示例。特别是,我们发现在溶解氧的存在下,来自廉价连续波光源的绿色光子可以驱动具有热力学挑战性的碳-氯键活化。因此,我们的研究与从卤化(有毒)污染物中清除水以及在最环境友好的溶剂中进行可持续光化学化相关。

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