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INSTITUTE OF APP... [3]
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Journal article [3]
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2025 [1]
2024 [1]
2023 [1]
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英語English [3]
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Applied Catalysi... [1]
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Materials Today ... [1]
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Asymmetric high-coordination Co-NSP single-atom catalysts with tailored d-p-orbital electron structure for efficient bifunctional catalyst of rechargeable Zn-air battery cathodes
Journal article
Lv, Ze, Shu, Zheng, Luo, Jiawei, Xu, Jiawen, Ma, Yimeng, Zhang, Linping, Xu, Hong, Mao, Zhiping. Asymmetric high-coordination Co-NSP single-atom catalysts with tailored d-p-orbital electron structure for efficient bifunctional catalyst of rechargeable Zn-air battery cathodes[J]. Applied Catalysis B: Environmental, 2025, 365, 124889.
Authors:
Lv, Ze
;
Shu, Zheng
;
Luo, Jiawei
;
Xu, Jiawen
;
Ma, Yimeng
; et al.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
20.2
/
18.9
|
Submit date:2025/01/22
Single Atom Catalyst
Asymmetric Atomic Co Site
High Coordination
D-band Center
Zn-air Battery
Unlocking the critical roles of N, P Co-Doping in MXene for Lithium-Oxygen Batteries: Elevated d-Band center and expanded interlayer spacing
Journal article
Wang, Zhonghua, Dong, Zhen, Wu, Bangjun, Wang, Zhongquan, Qiu, Zhenping, Wang, Da, Zeng, Qingguang, Liu, Xiaolu, Nam Hui, Kwun, Liu, Zheng, Zhang, Yelong. Unlocking the critical roles of N, P Co-Doping in MXene for Lithium-Oxygen Batteries: Elevated d-Band center and expanded interlayer spacing[J]. Journal of Colloid and Interface Science, 2024, 676, 368-377.
Authors:
Wang, Zhonghua
;
Dong, Zhen
;
Wu, Bangjun
;
Wang, Zhongquan
;
Qiu, Zhenping
; et al.
Favorite
|
TC[WOS]:
6
TC[Scopus]:
8
IF:
9.4
/
8.2
|
Submit date:2024/08/05
D-band Center
Interlayer Spacing
Li-o2 Batteries
Mxene
n, p Co-doping
Topological tailoring-induced Dirac cone in ultrathin niobium diboride nanosheets for electrocatalytic sulfur reduction reaction
Journal article
Zhao, Yuwei, Zhang, Linghai, Xiang, Jianglu, Chen, Xinyu, Zhu, Chao, Wang, Kaixi, Li, Junfeng, Ma, Huifang, Song, Xuefen, Wang, Lin, Zha, Chenyang. Topological tailoring-induced Dirac cone in ultrathin niobium diboride nanosheets for electrocatalytic sulfur reduction reaction[J]. Materials Today Physics, 2023, 32, 101029.
Authors:
Zhao, Yuwei
;
Zhang, Linghai
;
Xiang, Jianglu
;
Chen, Xinyu
;
Zhu, Chao
; et al.
Favorite
|
TC[WOS]:
11
TC[Scopus]:
10
IF:
10.0
/
9.8
|
Submit date:2023/04/03
Catalytic Reaction
D-band Center
Dirac Materials
Lithium Sulfur Battery
Weyl Fermions