剥脱关节
催化作用
材料科学
金属
甲酸
选择性
化学工程
纳米技术
无机化学
化学
石墨烯
有机化学
冶金
工程类
作者
Honglei Wang,Yunfei Jiao,Bing Wu,Dong Wang,Yueqi Hu,Fei Liang,Chen Shen,Andrea Knauer,Dan Ren,Hongguang Wang,Peter A van Aken,Hongbin Zhang,Michael Grätzel,Zdenek Sofer,Peter Schaaf
标识
DOI:10.1002/anie.202217253
摘要
Two-dimensional (2D) materials catalysts provide an atomic scale view on fascinating arena for understanding the mechanism of electrocatalytic carbon dioxide reduction (CO2 ECR). Here, we successfully exfoliated both layered and nonlayered ultra-thin metal phosphorous trichalcogenides (MPCh3) nanosheets via wet grinding exfoliation (WGE), and systematically investigated the mechanism of MPCh3 as catalysts for CO2 ECR. Unlike the layered CoPS3 and NiPS3 nanosheets, the active Sn atoms tend to be exposed on the surfaces of nonlayered SnPS3 nanosheets. Correspondingly, the nonlayered SnPS3 nanosheets exhibit clearly improved catalytic activity, showing formic acid selectivity up to 31.6% with -7.51 mA cm-2 at -0.65 V vs. RHE. The enhanced catalytic performance can be attributed to the formation of HCOO* via the first proton-electron pair addition on the SnPS3 surface. These results provide a new avenue to understand novel CO2 ECR mechanism of Sn-based and MPCh3-based catalysts.
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