SusMat · 2022 · 105 citations · 53 references
Materials ScienceChemical EngineeringEngineeringInorganic PhotochemistrySolar EnergyCds NanowiresSingle-atom CatalystPhotocatalysisHydrogen Production TechnologyCatalysisNi SitesChemistryHydrogenHydrogen GenerationPhotoelectrochemistryIsolated Ni AtomsSolar Cell Materials
Abstract Precise construction of isolated reactive centers on semiconductors with well‐controlled configurations affords a great opportunity to investigate the reaction mechanisms in the photocatalytic process and realize the targeted conversion of solar energy to steer the charge kinetics for hydrogen evolution. In the current research, we decorated isolated Ni atoms on the surface of CdS nanowires for efficient photocatalytic hydrogen production. X‐ray absorption fine structure investigations clearly demonstrate the atomical dispersion of Ni sites on the surface of CdS nanowires. Experimental investigations reveal that the isolated Ni atoms not only perform well as the real reactive centers but also greatly accelerate the electron transfer via direct Ni–S coordination. Theoretical simulation further documents that the hydrogen adsorption process has also been enhanced over the semi‐coordinated Ni centers through electronic coupling at the atomic scale.
53
Roles of Cocatalysts in Photocatalysis and Photoelectrocatalysis
Jin‐Hui Yang, Donge Wang, Hongxian Han et al. · Accounts of Chemical Research · 2013 · 2.8K citations
Materials Science, Chemical Engineering, Dual Cocatalysts +15
Single‐Atom Pt as Co‐Catalyst for Enhanced Photocatalytic H<sub>2</sub> Evolution
Xiaogang Li, Wentuan Bi, Lei Zhang et al. · Advanced Materials · 2016 · 1.4K citations
Guangfu Liao, Yan Gong, Li Zhang et al. · Energy & Environmental Science · 2019 · 1K citations
Materials Science, Graphene Nanomeshes, Chemical Engineering +15