Fabricating Black‐Phosphorus/Iron‐Tetraphosphide Heterostructure via a Solid‐Phase Solution‐Precipitation Method for High‐Performance Nitrogen Reduction
Bian Shi
1
,
Qian Liu
1, 2
,
Xue Zhang
1
,
Chao Ma
3
,
Yanli Zhang Yanli
1
,
Ziqiang Cheng
1
,
Yihong Kang
1
,
Wei Lu
1
,
Paul K. Chu
4
,
XUE-FENG YU
1, 5
,
Jiahong Wang
1, 5
5
Hubei Three Gorges Laboratory Yichang 443007 P. R. China
|
Publication type: Journal Article
Publication date: 2022-08-15
scimago Q1
wos Q1
SJR: 3.301
CiteScore: 16.1
Impact factor: 12.1
ISSN: 16136810, 16136829
PubMed ID:
35971184
General Chemistry
Biotechnology
General Materials Science
Biomaterials
Abstract
Although constructing heterostructures is considered as one of the most successful strategies to improve the activity of a catalyst, the heterostructures usually suffer from the cumbersome preparation treatments and low-yield. Inspired by a solid-phase solution-precipitation (SPSP) process, an approach for interface intensive heterostructures with high yield is developed. Herein, a black-phosphorus/iron-tetraphosphide (BP/FeP4) heterostructure is prepared mechanochemically with high transient pressure by the solid-phase ball milling approach. The BP/FeP4 heterostructure delivers excellent catalytic performance in the nitrogen reduction reaction (NRR) as exemplified by an NH3 yield of 77.6 µg h−1 mg cat . − 1 \[{\rm{mg}}_{{\rm{cat}}{\rm{.}}}^{{\bm{ - }}1}\] and Faradic efficiency of 62.9% (−0.2 V), which are superior to that of most NRR catalysts recently reported. Experimental investigation and density-functional theory calculation indicate the importance of excess phosphorus in the heterostructures on the NRR activity, which assists the Fe atom to activate N2 via adsorbing the H atom. The results demonstrate the great potential of this new type of heterostructures prepared by the SPSP approach. Benefiting from the simple preparation process and low cost, the heterostructures offer a new insight into the development of highly efficient catalysts.
Found
Nothing found, try to update filter.
Found
Nothing found, try to update filter.
Top-30
Journals
|
1
2
|
|
|
Advanced Functional Materials
2 publications, 14.29%
|
|
|
Small
1 publication, 7.14%
|
|
|
Chemical Engineering Journal
1 publication, 7.14%
|
|
|
ACS Applied Nano Materials
1 publication, 7.14%
|
|
|
European Polymer Journal
1 publication, 7.14%
|
|
|
Exploration
1 publication, 7.14%
|
|
|
Journal of Nanobiotechnology
1 publication, 7.14%
|
|
|
Accounts of Materials Research
1 publication, 7.14%
|
|
|
Journal of Alloys and Compounds
1 publication, 7.14%
|
|
|
Nanotechnology
1 publication, 7.14%
|
|
|
Sustainable Materials and Technologies
1 publication, 7.14%
|
|
|
Russian Chemical Reviews
1 publication, 7.14%
|
|
|
1
2
|
Publishers
|
1
2
3
4
|
|
|
Wiley
4 publications, 28.57%
|
|
|
Elsevier
4 publications, 28.57%
|
|
|
American Chemical Society (ACS)
2 publications, 14.29%
|
|
|
Springer Nature
1 publication, 7.14%
|
|
|
IOP Publishing
1 publication, 7.14%
|
|
|
Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 publication, 7.14%
|
|
|
1
2
3
4
|
- We do not take into account publications without a DOI.
- Statistics recalculated weekly.
Are you a researcher?
Create a profile to get free access to personal recommendations for colleagues and new articles.
Metrics
14
Total citations:
14
Citations from 2025:
4
(28.57%)
Cite this
GOST |
RIS |
BibTex |
MLA
Cite this
GOST
Copy
Shi B. et al. Fabricating Black‐Phosphorus/Iron‐Tetraphosphide Heterostructure via a Solid‐Phase Solution‐Precipitation Method for High‐Performance Nitrogen Reduction // Small. 2022. Vol. 18. No. 39. p. 2203284.
GOST all authors (up to 50)
Copy
Shi B., Liu Q., Zhang X., Ma C., Zhang Yanli Y., Cheng Z., Kang Y., Lu W., Chu P. K., YU X., Wang J. Fabricating Black‐Phosphorus/Iron‐Tetraphosphide Heterostructure via a Solid‐Phase Solution‐Precipitation Method for High‐Performance Nitrogen Reduction // Small. 2022. Vol. 18. No. 39. p. 2203284.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1002/smll.202203284
UR - https://doi.org/10.1002/smll.202203284
TI - Fabricating Black‐Phosphorus/Iron‐Tetraphosphide Heterostructure via a Solid‐Phase Solution‐Precipitation Method for High‐Performance Nitrogen Reduction
T2 - Small
AU - Shi, Bian
AU - Liu, Qian
AU - Zhang, Xue
AU - Ma, Chao
AU - Zhang Yanli, Yanli
AU - Cheng, Ziqiang
AU - Kang, Yihong
AU - Lu, Wei
AU - Chu, Paul K.
AU - YU, XUE-FENG
AU - Wang, Jiahong
PY - 2022
DA - 2022/08/15
PB - Wiley
SP - 2203284
IS - 39
VL - 18
PMID - 35971184
SN - 1613-6810
SN - 1613-6829
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2022_Shi,
author = {Bian Shi and Qian Liu and Xue Zhang and Chao Ma and Yanli Zhang Yanli and Ziqiang Cheng and Yihong Kang and Wei Lu and Paul K. Chu and XUE-FENG YU and Jiahong Wang},
title = {Fabricating Black‐Phosphorus/Iron‐Tetraphosphide Heterostructure via a Solid‐Phase Solution‐Precipitation Method for High‐Performance Nitrogen Reduction},
journal = {Small},
year = {2022},
volume = {18},
publisher = {Wiley},
month = {aug},
url = {https://doi.org/10.1002/smll.202203284},
number = {39},
pages = {2203284},
doi = {10.1002/smll.202203284}
}
Cite this
MLA
Copy
Shi, Bian, et al. “Fabricating Black‐Phosphorus/Iron‐Tetraphosphide Heterostructure via a Solid‐Phase Solution‐Precipitation Method for High‐Performance Nitrogen Reduction.” Small, vol. 18, no. 39, Aug. 2022, p. 2203284. https://doi.org/10.1002/smll.202203284.