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Atomically Dispersed Au-Assisted C-C Coupling on Red Phosphorus for CO 2 Photoreduction to C 2 H 6 .

Honghui OuGuosheng LiWei RenBoju PanGuanghui LuoZhuofeng HuDingsheng WangYadong Li
Published in: Journal of the American Chemical Society (2022)
Single-atom catalysts have exhibited great potential in the photocatalytic conversion of CO 2 to C 2 products, but generation of gaseous multi-carbon hydrocarbon products is still challenging. Previously, supports of a single atom consist of multiple elements, making C-C coupling difficult because the coordination environment of single-atom sites is diversified and difficult to control. Here, we steer C-C coupling by implanting an Au single atom on the red phosphorus (Au 1 /RP), support with uniform structure composed of a single element, lower electronegativity, and better ability to absorb CO 2 . The electron-rich phosphorus atoms near the Au single atoms can function as active sites for CO 2 activation. The Au single atom can effectively reduce the energy barrier of C-C coupling, boosting the reaction kinetics of the formation of C 2 H 6 . Notably, the C 2 H 6 selectivity and turnover frequency of Au 1 /RP reach 96% and 7.39 h -1 without a sacrificial agent, respectively, which almost represents the best photocatalyst for C 2 chemical synthesis to date. This research will provide new ideas for the design of high-efficiency photocatalysts for CO 2 conversion to C 2 products.
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