A Covalent Organic Framework Bearing Single Ni Sites as a Synergistic Photocatalyst for Selective Photoreduction of CO 2 to CO
Photocatalytic reduction of CO into energy-rich carbon compounds has attracted increasing attention. However, it is still a challenge to selectively and effectively convert CO to a desirable reaction product. Herein, we report a design of a synergistic photocatalyst for selective reduction of CO to...
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Published in | Journal of the American Chemical Society Vol. 141; no. 18; pp. 7615 - 7621 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
08.05.2019
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Online Access | Get full text |
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Summary: | Photocatalytic reduction of CO
into energy-rich carbon compounds has attracted increasing attention. However, it is still a challenge to selectively and effectively convert CO
to a desirable reaction product. Herein, we report a design of a synergistic photocatalyst for selective reduction of CO
to CO by using a covalent organic framework bearing single Ni sites (Ni-TpBpy), in which electrons transfer from photosensitizer to Ni sites for CO production by the activated CO
reduction under visible-light irradiation. Ni-TpBpy exhibits an excellent activity, giving a 4057 μmol g
of CO in a 5 h reaction with a 96% selectivity over H
evolution. More importantly, when the CO
partial pressure was reduced to 0.1 atm, 76% selectivity for CO production is still obtained. Theoretical calculations and experimental results suggest that the promising catalytic activity and selectivity are ascribed to synergistic effects of single Ni catalytic sites and TpBpy, in which the TpBpy not only serves as a host for CO
molecules and Ni catalytic sites but also facilitates the activation of CO
and inhibits the competitive H
evolution. |
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ISSN: | 0002-7863 1520-5126 |
DOI: | 10.1021/jacs.9b02997 |