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Catalyst Luminescence Exploited as an Inherent In Situ Probe of Photoredox Catalysis

机译:发光利用作为一个固有的催化剂现场调查Photoredox催化

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The luminescence of commonly used photoredox catalysts offers a continuous inherent in situ probe of electron or energy transfer that can be monitored by photodetectors such as a CCD spectrometer or a digital camera.This approach was applied with complementary ex situ experiments to examine the aerobic oxidation of anthracene with tris(2,2’-bipyridine)ruthenium(II) as the catalyst.The reaction results in the precipitation of an isometrically pure syn-tetraepoxide not seen in prior studies when an organic photocatalyst was employed.Changes in the emission were observed not only upon electron/energy transfer quenching of the catalyst but also from the presence of particles (undissolved substrate and precipitated product).These features impart dissimilar spectral distributions that can be discriminated by their relative contributions to the RGB data of the digital images.The approach thus enables interrogation of multiple facets of the reaction for monitoring and optimization,and offers unique insight into the mechanisms of photoredox catalysis systems.
机译:常用的photoredox的发光催化剂提供了一个连续的固有的原位探针的电子或能量转移监控CCD等光电探测器谱仪或数码相机。和非原位互补应用吗实验检查的有氧氧化蒽,催化剂。降水的同分异构地纯洁syn-tetraepoxide时在先前的研究中未见有机光催化剂使用。排放不仅观察电子/能量传递的淬火催化剂还存在的粒子(未溶解的衬底和沉淀产品)。光谱分布,可以歧视由它们的相对贡献RGB数据数字图像。审讯的多个方面的反应监控和优化,并提供独一无二的洞察photoredox的机制催化系统。

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