volume 63 issue 2 pages 1035-1045

Screening of Transition Metal Supported on Black Phosphorus as Electrocatalysts for CO2 Reduction

Weichan Zhong 1
Jingxiu Yue 1
Rongxin Zhang 1
Hongjie Huang 1
Hong Huang 1
Zhangfeng Shen 1
L. Jiang 1
Minhong Xu 2
Guoxiang Pan 2
Qineng Xia 1
Yongyong Cao 1
Publication typeJournal Article
Publication date2024-01-03
scimago Q1
wos Q1
SJR0.958
CiteScore7.4
Impact factor4.7
ISSN00201669, 1520510X
Inorganic Chemistry
Physical and Theoretical Chemistry
Abstract
The electrocatalytic CO2 reduction (CO2RR) is an effective and economical strategy to eliminate CO2 through conversion into value-added chemicals and fuels. However, exploring and screening suitable 2D material-based single-atom catalysts (SACs) for CO2 reduction are still a great challenge. In this study, 27 (3d, 4d, and 5d, except Tc and Hg) transition metal (TM) atom-doped black phosphorus (TM@BP) electrocatalysts were systematically investigated for CO2RR by density functional theory calculations. According to the stability of SACs and their effectiveness in activating the CO2 molecule, three promising catalysts, Zr@BP, Nb@BP, and Ru@BP, were successfully screened out, exhibiting outstanding catalytic activity for the production of carbon monoxide (CO), methyl alcohol (CH3OH), and methane (CH4) with limiting potentials of −0.79, −0.49, and −0.60 V, respectively. A catalytic relationship between the d-band centers of SACs and the limiting potential of CO2RR was used to estimate the catalytic activity of catalysts. Furthermore, Nb@BP has high selectivity for CO2RR to CH3OH compared to H2 formation, while the hydrogen evolution reaction significantly impacts the synthesis of CO and CH4 on Zr@BP and Ru@BP. Nitrogen atom doping in BP is beneficial for enhancing the selectivity of CO2RR, but it is detrimental to the activity of CO2RR. This study offers theoretical guidance for synthesizing highly efficient CO2RR electrocatalysts and further enhances structural modulation methods for layered 2D materials.
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GOST Copy
Zhong W. et al. Screening of Transition Metal Supported on Black Phosphorus as Electrocatalysts for CO2 Reduction // Inorganic Chemistry. 2024. Vol. 63. No. 2. pp. 1035-1045.
GOST all authors (up to 50) Copy
Zhong W., Yue J., Zhang R., Huang H., Huang H., Shen Z., Jiang L., Xu M., Pan G., Xia Q., Cao Y. Screening of Transition Metal Supported on Black Phosphorus as Electrocatalysts for CO2 Reduction // Inorganic Chemistry. 2024. Vol. 63. No. 2. pp. 1035-1045.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/acs.inorgchem.3c03320
UR - https://pubs.acs.org/doi/10.1021/acs.inorgchem.3c03320
TI - Screening of Transition Metal Supported on Black Phosphorus as Electrocatalysts for CO2 Reduction
T2 - Inorganic Chemistry
AU - Zhong, Weichan
AU - Yue, Jingxiu
AU - Zhang, Rongxin
AU - Huang, Hongjie
AU - Huang, Hong
AU - Shen, Zhangfeng
AU - Jiang, L.
AU - Xu, Minhong
AU - Pan, Guoxiang
AU - Xia, Qineng
AU - Cao, Yongyong
PY - 2024
DA - 2024/01/03
PB - American Chemical Society (ACS)
SP - 1035-1045
IS - 2
VL - 63
PMID - 38171367
SN - 0020-1669
SN - 1520-510X
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2024_Zhong,
author = {Weichan Zhong and Jingxiu Yue and Rongxin Zhang and Hongjie Huang and Hong Huang and Zhangfeng Shen and L. Jiang and Minhong Xu and Guoxiang Pan and Qineng Xia and Yongyong Cao},
title = {Screening of Transition Metal Supported on Black Phosphorus as Electrocatalysts for CO2 Reduction},
journal = {Inorganic Chemistry},
year = {2024},
volume = {63},
publisher = {American Chemical Society (ACS)},
month = {jan},
url = {https://pubs.acs.org/doi/10.1021/acs.inorgchem.3c03320},
number = {2},
pages = {1035--1045},
doi = {10.1021/acs.inorgchem.3c03320}
}
MLA
Cite this
MLA Copy
Zhong, Weichan, et al. “Screening of Transition Metal Supported on Black Phosphorus as Electrocatalysts for CO2 Reduction.” Inorganic Chemistry, vol. 63, no. 2, Jan. 2024, pp. 1035-1045. https://pubs.acs.org/doi/10.1021/acs.inorgchem.3c03320.