| Literature DB >> 32897636 |
Wei Yang1, Hong-Juan Wang1, Rui-Rui Liu1, Jia-Wei Wang2, Chao Zhang1, Chao Li1, Di-Chang Zhong1, Tong-Bu Lu1.
Abstract
It is common that different crystal facets in metal and metal oxide nanocrystals display different catalytic performances, whereas such phenomena have been rarely documented in metal-organic frameworks (MOFs). Herein, we demonstrate for the first time that a nickel metal-organic layer (MOL) exposing rich (100) crystal facets (Ni-MOL-100) shows a much higher photocatalytic CO2 -to-CO activity than the one exposing rich (010) crystal facets (Ni-MOL-010) and its bulky counterpart (bulky Ni-MOF), with a catalytic activity up to 2.5 and 4.6 times more active than Ni-MOL-010 and bulky Ni-MOF, respectively. Theoretical studies reveal that the two coordinatively unsaturated NiII ions with a close distance of 3.50 Å on the surface of Ni-MOL-100 enables synergistic catalysis, leading to more favorable energetics in CO2 reduction than that of Ni-MOL-010.Entities:
Keywords: crystal engineering; crystal facet tuning; heterogeneous catalysis; metal-organic layers; photocatalytic CO2 reduction
Year: 2020 PMID: 32897636 DOI: 10.1002/anie.202011068
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336