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Chromoselective Photocatalysis: Controlled Bond Activation through Light-Color Regulation of Redox Potentials

机译:变色光催化:通过氧化还原电位的浅色调节控制键的活化

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Catalysts that can be regulated in terms of activity and selectivity by external stimuli may allow the efficient multistep synthesis of complex molecules and pharmaceuticals. Herein, we report the light-color regulation of the redox potential of a photocatalyst to control the activation of chemical bonds. Light-color control of the redox power of a photocatalyst introduces a new selectivity parameter to photoredox catalysis: Instead of changing the catalyst or ligand, alteration of the color of the visible-light irradiation adjusts the selectivity in catalytic transformations. By using this principle, the selective activation of aryl-halide bonds for C-H arylation and the sequential conversion of functional groups with different reduction potentials is possible by simply applying different colors of light for excitation of the photocatalyst.
机译:可以通过外部刺激在活性和选择性方面进行调节的催化剂可以实现复杂分子和药物的高效多步合成。在此,我们报道了光催化剂的氧化还原电位的浅色调节,以控制化学键的活化。光催化剂的氧化还原能力的浅色控制为光氧化还原催化引入了新的选择性参数:代替改变催化剂或配体,可见光照射颜色的改变可调节催化转化的选择性。通过使用该原理,可以通过简单地施加不同颜色的光来激发光催化剂来选择性活化用于C-H芳基化的芳基卤化物键和具有不同还原电势的官能团的顺序转化。

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