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A Ruthenium(II)-Copper(II) Dyad for the Photocatalytic Oxygenation of Organic Substrates Mediated by Dioxygen Activation

机译:钌(II)-铜(II)染料用于双氧活化介导的有机底物的光催化氧化

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摘要

Dioxygen activation by copper complexes is a valuable method to achieve oxidation reactions for sustainable chemistry. The development of a catalytic system requires regeneration of the Cu-I active redox state from Cu-II. This is usually achieved using extra reducers that can compete with the Cu-II(O-2) oxidizing species, causing a loss of efficiency. An alternative would consist of using a photosensitizer to control the reduction process. Association of a Ru-II photosensitizing subunit with a Cu-II pre-catalytic moiety assembled within a unique entity is shown to fulfill these requirements. In presence of a sacrificial electron donor and light, electron transfer occurs from the Ru-II center to Cu-II. In presence of dioxygen, this dyad proved to be efficient for sulfide, phosphine, and alkene catalytic oxygenation. Mechanistic investigations gave evidence about a predominant O-3(2) activation pathway by the CuI moiety.
机译:通过铜络合物激活双氧是实现可持续化学氧化反应的宝贵方法。催化系统的发展需要从Cu-II再生Cu-I活性氧化还原态。通常使用可以与Cu-II(O-2)氧化物质竞争的额外还原剂来实现,从而导致效率降低。一种替代方法是使用光敏剂控制还原过程。显示Ru-II光敏亚基与组装在独特实体内的Cu-II预催化部分的缔合满足这些要求。在牺牲电子供体和光的存在下,电子从Ru-II中心转移到Cu-II。在存在双氧的情况下,该二重化合物被证明对硫化物,膦和烯烃催化氧合有效。机械研究提供了有关CuI部分主导的O-3(2)激活途径的证据。

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