首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A cyanide-bridged di-manganese carbonyl complex that photochemically reduces CO2 to CO
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A cyanide-bridged di-manganese carbonyl complex that photochemically reduces CO2 to CO

机译:一种氰化物桥接的二锰羰基络合物,可光明地减少CO2至CO

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摘要

Manganese(i) tricarbonyl complexes such as [Mn(bpy)(CO)(3)L] (L = Br, or CN) are known to be electrocatalysts for CO2 reduction to CO. However, due to their rapid photodegradation under UV and visible light, these monomeric manganese complexes have not been considered as photocatalysts for CO2 reduction without the use of a photosensitizer. In this paper, we report a cyanide-bridged di-manganese complex, {[Mn(bpy)(CO)(3)](2)(-CN)}ClO4, which is both electrocatalytic and photochemically active for CO2 reduction to CO. Compared to the [Mn(bpy)(CO)(3)CN] electrocatalyst, our CN-bridged binuclear complex is a more efficient electrocatalyst for CO2 reduction using H2O as a proton source. In addition, we report a photochemical CO2 reduction to CO using the dimanganese complex under 395 nm irradiation.
机译:已知锰(I)三羰基络合物如[Mn(BPY)(CO)(CO)(3)(3)(3)(3))(L = Br,或CN)是用于CO2还原到CO的电催化剂。但是,由于它们在紫外线和紫外线下的快速光降解而 可见光,这些单体锰配合物未被认为是CO 2的光催化剂,而不使用光敏剂。 在本文中,我们报告了一种氰化物桥接二锰络合物,{[Mn(BPY)(CO)(3)(3)(3)(3))ClO4,其均是电催化和光化学活性的CO2减少与CO 。与[Mn(BPY)(CO)(CO)(3)CN]电催化剂相比,我们的CN-桥接双核络合物是使用H 2 O作为质子源的CN2减少的更有效的电催化剂。 此外,我们在395nm辐照下使用Dimanganese复合物报告了光化学二氧化碳减少。

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