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Multi-Photon Excitation in Photoredox Catalysis: Concepts, Applications, Methods

机译:在Photoreox催化中的多光子励磁:概念,应用,方法

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摘要

The energy of visible photons and the accessible redox potentials of common photocatalysts set thermodynamic limits to photochemical reactions that can be driven by traditional visible-light irradiation. UV excitation can be damaging and induce side reactions, hence visible or even near-IR light is usually preferable. Thus, photochemistry currently faces two divergent challenges, namely the desire to perform ever more thermodynamically demanding reactions with increasingly lower photon energies. The pooling of two low-energy photons can address both challenges simultaneously, and whilst multi-photon spectroscopy is well established, synthetic photoredox chemistry has only recently started to exploit multi-photon processes on the preparative scale. Herein, we have a critical look at currently developed reactions and mechanistic concepts, discuss pertinent experimental methods, and provide an outlook into possible future developments of this rapidly emerging area.
机译:可见光子的能量和普通光催化剂的可接近的氧化还原电位将热力学限制设定为可通过传统的可见光照射驱动的光化学反应。 紫外线激发可能损坏并且诱导副反应,因此可见或甚至接近IR光通常是优选的。 因此,光化学目前面临两种发散的挑战,即渴望在越来越低的光子能量中表现更热力学要求的反应。 两个低能量光子的汇集可以同时解决这两个挑战,并且在多光子谱透视得到很好的情况下,合成的Photoreox化学最近仅开始利用了制备规模的多光子过程。 在此,我们对目前开发的反应和机械概念进行了批判性,讨论了相关的实验方法,并提供了可能的未来出现这种快速新兴区域的可能性。

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