H
Huilong Fei
Researcher at Hunan University
Publications - 70
Citations - 10813
Huilong Fei is an academic researcher from Hunan University. The author has contributed to research in topics: Graphene & Catalysis. The author has an hindex of 38, co-authored 57 publications receiving 7621 citations. Previous affiliations of Huilong Fei include Beijing University of Technology & University of California, Los Angeles.
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Journal ArticleDOI
General synthesis and definitive structural identification of MN4C4 single-atom catalysts with tunable electrocatalytic activities
Huilong Fei,Juncai Dong,Yexin Feng,Christopher S. Allen,Chengzhang Wan,Boris Volosskiy,Mufan Li,Zipeng Zhao,Yiliu Wang,Hongtao Sun,Pengfei An,Wenxing Chen,Zhiying Guo,Chain Lee,Dongliang Chen,Imran Shakir,Mingjie Liu,Tiandou Hu,Yadong Li,Angus I. Kirkland,Xiangfeng Duan,Yu Huang +21 more
TL;DR: In this paper, a general approach to a series of monodispersed atomic transition metals (for example, Fe, Co, Ni) embedded in nitrogen-doped graphene with a common MN4C4 moiety, identified by systematic X-ray absorption fine structure analyses and direct transmission electron microscopy imaging, was reported.
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Atomic cobalt on nitrogen-doped graphene for hydrogen generation
Huilong Fei,Juncai Dong,M. Josefina Arellano-Jiménez,Gonglan Ye,Nam Dong Kim,Errol L. G. Samuel,Zhiwei Peng,Zhuan Zhu,Fan Qin,Jiming Bao,Miguel Jose Yacaman,Pulickel M. Ajayan,Dongliang Chen,James M. Tour +13 more
TL;DR: An electrocatalyst for hydrogen generation based on very small amounts of cobalt dispersed as individual atoms on nitrogen-doped graphene is reported, which is robust and highly active in aqueous media with very low overpotentials.
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Three-dimensional holey-graphene/niobia composite architectures for ultrahigh-rate energy storage
Hongtao Sun,Lin Mei,Lin Mei,Junfei Liang,Zipeng Zhao,Chain Lee,Huilong Fei,Mengning Ding,Jonathan Lau,Mufan Li,Chen Wang,Xu Xu,Guolin Hao,Benjamin Papandrea,Imran Shakir,Bruce Dunn,Yu Huang,Xiangfeng Duan +17 more
TL;DR: In this article, a three-dimensional (3D) holey-graphene/niobia (Nb2O5) composite for ultra-high-rate energy storage at high mass loading was proposed.
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Edge-oriented MoS2 nanoporous films as flexible electrodes for hydrogen evolution reactions and supercapacitor devices.
TL;DR: The edge-oriented MoS2 film delivers excellent hydrogen evolution reaction (HER) activity with enhanced kinetics and long-term cycling stability, and has superior energy-storage performance when working as a flexible, all-solid-state supercapacitor device.
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Porous Cobalt‐Based Thin Film as a Bifunctional Catalyst for Hydrogen Generation and Oxygen Generation
TL;DR: A mixed-phased Co-based catalyst composed of Co phosphide and Co phosphate is successfully fabricated for bifunctional water electrolysis and allows an ability to generate both H2 and O2 in a single electrolyzer.