C
Chong Wang
Researcher at Carnegie Mellon University
Publications - 50
Citations - 1531
Chong Wang is an academic researcher from Carnegie Mellon University. The author has contributed to research in topics: Ising model & Superconductivity. The author has an hindex of 16, co-authored 50 publications receiving 720 citations. Previous affiliations of Chong Wang include Tsinghua University & University of Washington.
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Journal ArticleDOI
Single-atom catalyst boosts electrochemical conversion reactions in batteries
Jian Wang,Lujie Jia,Jun Zhong,Qingbo Xiao,Chong Wang,Ketao Zang,Haitao Liu,Hechuang Zheng,Jun Luo,Jin Yang,Haiyan Fan,Wenhui Duan,Yang Wu,Hongzhen Lin,Yuegang Zhang,Yuegang Zhang +15 more
TL;DR: In this article, the single atom catalyst can play a compelling role in boosting the electrochemical conversion kinetics and achieving previously-unreachable ultra-high-rate performance for Li2S/Li batteries.
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Correlated insulating states at fractional fillings of the WS2/WSe2 moiré lattice
Xiong Huang,Tianmeng Wang,Shengnan Miao,Chong Wang,Zhipeng Li,Zhen Lian,Takashi Taniguchi,Kenji Watanabe,Satoshi Okamoto,Di Xiao,Su-Fei Shi,Yong-Tao Cui +11 more
TL;DR: In this paper, a series of correlated insulating states at fractional fillings of the moire minibands on both electron- and hole-doped sides in angle-aligned WS2/WSe2 hetero-bilayers were observed.
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Intertwined Topological and Magnetic Orders in Atomically Thin Chern Insulator MnBi2Te4.
Dmitry Ovchinnikov,Xiong Huang,Zhong Lin,Zaiyao Fei,Jiaqi Cai,Tiancheng Song,Minhao He,Qianni Jiang,Chong Wang,Hao Li,Yayu Wang,Yang Wu,Di Xiao,Jiun-Haw Chu,Jiaqiang Yan,Jiaqiang Yan,Cui-Zu Chang,Yong-Tao Cui,Xiaodong Xu +18 more
TL;DR: This work establishes one-to-one correspondence between bulk electronic structure, magnetic state, topological order, and layer thickness in atomically thin MnBi2Te4 devices and sheds new light on the interplay between band topology and magnetic order in this newly discovered topological magnet.
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Magnetically controllable topological quantum phase transitions in the antiferromagnetic topological insulator MnBi 2 Te 4
TL;DR: Based on first-principles calculations, the authors found that manipulation of magnetic orientation and order not only significantly affects material symmetries and orbital hybridizations, but also results in variant magnetic topological phases.
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Direct visualization of magnetic domains and moiré magnetism in twisted 2D magnets.
Tiancheng Song,Qi-Chao Sun,Eric M. Anderson,Chong Wang,Jimin Qian,Takashi Taniguchi,Kenji Watanabe,Michael A. McGuire,Rainer Stöhr,Di Xiao,Ting Cao,Jörg Wrachtrup,Jörg Wrachtrup,Xiaodong Xu +13 more
TL;DR: Moire superlattices of twisted nonmagnetic two-dimensional (2D) materials are highly controllable platforms for the engineering of exotic correlated and topological states as discussed by the authors.