化学
格式化
合作性
氢化物
选择性
乙腈
光化学
无机化学
反应性(心理学)
金属
催化作用
立体化学
有机化学
生物化学
医学
替代医学
病理
作者
Jaya Bharti,Lingjing Chen,Zhenguo Guo,Lin Cheng,Joël Wellauer,Oliver S. Wenger,Niklas von Wolff,Kai‐Chung Lau,Tai‐Chu Lau,Gui Chen,Marc Robert
摘要
Visible-light-driven reduction of CO2 to both CO and formate (HCOO-) was achieved in acetonitrile solutions using a homobimetallic Cu bisquaterpyridine complex. In the presence of a weak acid (water) as coreactant, the reaction rate was enhanced, and a total of ca. 766 TON (turnover number) was reached for the CO2 reduction, with 60% selectivity for formate and 28% selectivity for CO, using Ru(phen)32+ as a sensitizer and amines as sacrificial electron donors. Mechanistic studies revealed that with the help of cooperativity between two Cu centers, a bridging hydride is generated in the presence of a proton source (water) and further reacts with CO2 to give HCOO-. A second product, CO, was also produced in a parallel competitive pathway upon direct coordination of CO2 to the reduced complex. Mechanistic studies further allowed comparison of the observed reactivity to the monometallic Cu quaterpyridine complex, which only produced CO, and to the related homobimetallic Co bisquaterpyridine complex, that has been previously shown to generate formate following a mechanism not involving the formation of an intermediate hydride species.
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