异质结
块(置换群论)
瓶颈
自旋(空气动力学)
Atom(片上系统)
催化作用
化学物理
化学
材料科学
光电子学
物理
计算机科学
热力学
嵌入式系统
几何学
生物化学
数学
作者
Yueyang Wang,Xiaoyan Ren,Bojie Jiang,Meng Deng,Xingju Zhao,Rui Pang,Shunfang Li
标识
DOI:10.1021/acs.jpclett.2c01605
摘要
Magnetic single-atom catalysts (MSAC), due to the intrinsic spin degree of freedom, are of particular importance relative to other conventional SAC for applications in various catalytic processes, especially in those cases that involve spin-triplet O 2 . However, the bottleneck issue in this field is the clustering of the SAC during the processes. Here using first-principles calculations we predict that Mn atoms can be readily confined in the interface of the porous g-C 3 N 4 /CeO 2 (111) heterostructure, forming high-performance MSAC for O 2 activation via a delicate synergetic mechanism of charge transfer, mainly provided by the p-block g-C 3 N 4 overlayer mediated by the d-block Mn active site, and spin selection, preserved mainly through active participation of the f-block Ce atoms and/or g-C 3 N 4, which effectively promotes the CO oxidization. Such a recipe is also demonstrated to be valid for V- and Nb-MSACs, which may shed new light on the design of highly efficient MSACs for various important chemical processes wherein spin-selection matters.
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