J
Junsheng Wu
Researcher at University of Science and Technology Beijing
Publications - 103
Citations - 1644
Junsheng Wu is an academic researcher from University of Science and Technology Beijing. The author has contributed to research in topics: Corrosion & Chemistry. The author has an hindex of 20, co-authored 80 publications receiving 1066 citations. Previous affiliations of Junsheng Wu include Nanyang Technological University.
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Exploring the impact of atomic lattice deformation on oxygen evolution reactions based on a sub-5 nm pure face-centred cubic high-entropy alloy electrocatalyst
Kang Huang,Bowei Zhang,Junsheng Wu,Tianyuan Zhang,Dongdong Peng,Xun Cao,Zhan Zhang,Zhong Li,Yizhong Huang +8 more
TL;DR: In this article, an advanced approach was developed to fabricate the smallest possible multimetal high-entropy alloys with deformed nanoparticles supported on the carbon cloth (CC) surface.
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Hydrotreating of crude 2-ethylhexanol over Ni/Al2O3 catalysts: Surface Ni species-catalytic activity correlation
Renchun Yang,Xiaogang Li,Junsheng Wu,Xin Zhang,Zhihua Zhang,Zhihua Zhang,Yufeng Cheng,Guo Jintao +7 more
TL;DR: In this article, a series of supported Ni/γ-Al 2 O 3 samples were prepared and then used to identify the surface Ni species, and the results indicated that two types of Ni species occurred on the samples with Ni loading ǫ 9.1
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Hierarchical three-dimensional Fe3O4@porous carbon matrix/graphene anodes for high performance lithium ion batteries
Shiji Hao,Bowei Zhang,Ying Wang,Chaojiang Li,Jianyong Feng,Sarah C. Ball,Madhavi Srinivasan,Junsheng Wu,Yizhong Huang +8 more
TL;DR: In this paper, the hierarchical three-dimensional Fe3O4@porous carbon matrix (PCM) and Fe3 O4@PCM/graphene are synthesized by a facile annealing of Mil-53(Fe) templates.
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Self-assembled Cu-Ni bimetal oxide 3D in-plane epitaxial structures for highly efficient oxygen evolution reaction
Chaojiang Li,Chaojiang Li,Bowei Zhang,Yong Li,Shiji Hao,Xun Cao,Guang Yang,Junsheng Wu,Yizhong Huang,Yizhong Huang +9 more
TL;DR: In this paper, double cathodes liquid plasma discharge (DC-LPD) method was developed to fabricate three-dimensional (3D) nest-like structures electrode on the nickel foam (NF).
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Phase transition of hollow-porous α-Fe2O3 microsphere based anodes for lithium ion batteries during high rate cycling
TL;DR: In this paper, hollow-porous α-Fe2O3 microspheres are prepared via cation etching of zinc citrate micro-spheres and subsequent thermal treatment.