Litcius/Paper detail

Engineering a Copper Single‐Atom Electron Bridge to Achieve Efficient Photocatalytic CO<sub>2</sub>Conversion

Gang Wang, Yan Wu, Zhujie Li, Zaizhu Lou, Qingqing Chen, Yifan Li, Dingsheng Wang, Junjie Mao

2023Angewandte Chemie12 citationsDOIOpen Access PDF

Abstract

Abstract Developing highly efficient and stable photocatalysts for the CO 2 reduction reaction (CO 2 RR) remains a great challenge. We designed a Z‐Scheme photocatalyst with N−Cu 1 −S single‐atom electron bridge (denoted as Cu‐SAEB), which was used to mediate the CO 2 RR. The production of CO and O 2 over Cu‐SAEB is as high as 236.0 and 120.1 μmol g −1 h −1 in the absence of sacrificial agents, respectively, outperforming most previously reported photocatalysts. Notably, the as‐designed Cu‐SAEB is highly stable throughout 30 reaction cycles, totaling 300 h, owing to the strengthened contact interface of Cu‐SAEB, and mediated by the N−Cu 1 −S atomic structure. Experimental and theoretical calculations indicated that the SAEB greatly promoted the Z‐scheme interfacial charge‐transport process, thus leading to great enhancement of the photocatalytic CO 2 RR of Cu‐SAEB. This work represents a promising platform for the development of highly efficient and stable photocatalysts that have potential in CO 2 conversion applications.

Topics & Concepts

PhotocatalysisMaterials scienceAtom (system on chip)CopperNanotechnologyCatalysisChemistryMetallurgyComputer scienceOrganic chemistryEmbedded systemCO2 Reduction Techniques and CatalystsAdvanced Photocatalysis TechniquesCovalent Organic Framework Applications
Engineering a Copper Single‐Atom Electron Bridge to Achieve Efficient Photocatalytic CO<sub>2</sub>Conversion | Litcius