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Integration of Co Single Atoms and Ni Clusters on Defect-Rich ZrO2for Strong Photothermal Coupling Boosts Photocatalytic CO2Reduction

Authors :
Chen, Jinghang
Ren, Yuqi
Fu, Yiwei
Si, Yitao
Huang, Jie
Zhou, Jiancheng
Liu, Maochang
Duan, Lunbo
Li, Naixu
Source :
ACS Nano; May 2024, Vol. 18 Issue: 20 p13035-13048, 14p
Publication Year :
2024

Abstract

We report a solvothermal method for the synthesis of an oxygen vacancy-enriched ZrO2photocatalyst with Co single atoms and Ni clusters immobilized on the surface. This catalyst presents superior performance for the reduction of CO2in H2O vapor, with a CO yield reaching 663.84 μmol g–1h–1and a selectivity of 99.52%. The total solar-to-chemical energy conversion efficiency is up to 0.372‰, which is among the highest reported values. The success, on one hand, depends on the Co single atoms and Ni clusters for both extended spectrum absorption and serving as dual-active centers for CO2reduction and H2O dissociation, respectively; on the other hand, this is attributed to the enhanced photoelectric and thermal effect induced by concentrated solar irradiation. We demonstrate that an intermediate impurity state is formed by the hybridization of the d-orbital of single-atom Co with the molecular orbital of H2O, enabling visible-light-driven excitation over the catalyst. In addition, Ni clusters play a crucial role in altering the adsorption configuration of CO2, with the localized surface plasmon resonance effect enhancing the activation and dissociation of CO2induced by visible–near-infrared light. This study provides valuable insights into the synergistic effect of the dual cocatalyst toward both efficient photothermal coupling and surface redox reactions for solar CO2reduction.

Details

Language :
English
ISSN :
19360851 and 1936086X
Volume :
18
Issue :
20
Database :
Supplemental Index
Journal :
ACS Nano
Publication Type :
Periodical
Accession number :
ejs66335428
Full Text :
https://doi.org/10.1021/acsnano.4c01637