Z
Zhiguo Wang
Researcher at University of Electronic Science and Technology of China
Publications - 237
Citations - 7039
Zhiguo Wang is an academic researcher from University of Electronic Science and Technology of China. The author has contributed to research in topics: Band gap & Density functional theory. The author has an hindex of 40, co-authored 226 publications receiving 5371 citations. Previous affiliations of Zhiguo Wang include Nanjing Tech University & Shenzhen Institute of Information Technology.
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Journal ArticleDOI
Tensile strain switched ferromagnetism in layered NbS2 and NbSe2.
TL;DR: Examination of a series of transition metal dichalcogenides shows that the biaxial tensile strained NbS (2) and NbSe(2) structures can be magnetized with a ferromagnetic character due to the competitive effects of through-bond interaction and through-space interaction.
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In situ TEM investigation of congruent phase transition and structural evolution of nanostructured silicon/carbon anode for lithium ion batteries.
Chongmin Wang,Xiaolin Li,Zhiguo Wang,Wu Xu,Jun Liu,Fei Gao,Libor Kovarik,Ji Guang Zhang,Jane Y. Howe,David J. Burton,Zhongyi Liu,Xingcheng Xiao,Suntharampillai Thevuthasan,Donald R. Baer +13 more
TL;DR: The crystallization of Li(15)Si(4) from amorphous Li(x)Si is a spontaneous, congruent phase transition process without phase separation or large-scale atomic motion, which is drastically different from what is expected from a classic nucleation and growth process.
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Conflicting roles of nickel in controlling cathode performance in lithium ion batteries.
Meng Gu,Ilias Belharouak,Arda Genc,Zhiguo Wang,Dapeng Wang,Khalil Amine,Fei Gao,Guangwen Zhou,Suntharampillai Thevuthasan,Donald R. Baer,Ji Guang Zhang,Nigel D. Browning,Jun Liu,Chongmin Wang +13 more
TL;DR: The unexpected discovery of a thermodynamically driven, yet kinetically controlled, surface modification in the widely explored lithium nickel manganese oxide cathode material, which may inhibit the battery charge/discharge rate is reported.
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Room-Temperature High-Performance H2S Sensor Based on Porous CuO Nanosheets Prepared by Hydrothermal Method
Zhijie Li,Ningning Wang,Zhijie Lin,Junqiang Wang,Wei Liu,Kai Sun,Yong Qing Fu,Yong Qing Fu,Zhiguo Wang +8 more
TL;DR: The working principle of the porous CuO nanosheet based sensor to detect the H2S was identified to be the phase transition from semiconducting CuO to a metallic conducting CuS.
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Design of active nickel single-atom decorated MoS2 as a pH-universal catalyst for hydrogen evolution reaction
Qi Wang,Zhi Liang Zhao,Sha Dong,Dongsheng He,Matthew J. Lawrence,Shaobo Han,Shaobo Han,Chao Cai,Chao Cai,Shuhuai Xiang,Paramaconi Rodriguez,Bin Xiang,Zhiguo Wang,Yongye Liang,Meng Gu +14 more
TL;DR: In this article, a single Ni atom decorated MoS2 (NiSA-MoS2) was shown to increase the hydrogen evolution reaction (HER) activity in both alkaline and acidic conditions.