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Dive into the research topics where Cong Wang is active.

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Featured researches published by Cong Wang.


Nano Letters | 2017

Inversion Domain Boundary Induced Stacking and Bandstructure Diversity in Bilayer MoSe2

Jinhua Hong; Cong Wang; Hongjun Liu; Xibiao Ren; Jinglei Chen; Jin-Feng Jia; Maohai Xie; Chuanhong Jin; Wei Ji; Jun Yuan; Ze Zhang

Interlayer rotation and stacking were recently demonstrated as effective strategies for tuning physical properties of various two-dimensional materials. The latter strategy was mostly realized in heterostructures with continuously varied stacking orders, which obscure the revelation of the intrinsic role of a certain stacking order in its physical properties. Here, we introduce inversion-domain-boundaries into molecular-beam-epitaxy grown MoSe2 homobilayers, which induce uncommon fractional lattice translations to their surrounding domains, accounting for the observed diversity of large-area and uniform stacking sequences. Low-symmetry stacking orders were observed using scanning transmission electron microscopy and detailed geometries were identified by density functional theory. A linear relation was also revealed between interlayer distance and stacking energy. These stacking sequences yield various energy alignments between the valence states at the Γ and K points of the Brillouin zone, showing stacking-dependent bandgaps and valence band tail states in the measured scanning tunneling spectroscopy. These results may benefit the design of two-dimensional multilayers with manipulable stacking orders.


Chinese Science Bulletin | 2018

Few-layer Tellurium: one-dimensional-like layered elementary semiconductor with striking physical properties

Jingsi Qiao; Yuhao Pan; Feng Yang; Cong Wang; Yang Chai; Wei Ji


Archive | 2018

Stacking tunable interlayer magnetism in bilayer CrI3

Peiheng Jiang; Cong Wang; Dachuan Chen; Zhicheng Zhong; Zhe Yuan; Zhong-Yi Lu; Wei Ji


arXiv: Materials Science | 2018

Charge tunable structural phase transitions in few-layer tellurium: a step toward building mono-elemental devices

Cong Wang; Jingsi Qiao; Yuhao Pan; Linwei Zhou; Xianghua Kong; Zhihai Cheng; Yang Chai; Wei Ji


arXiv: Materials Science | 2018

A family of high-temperature ferromagnetic semiconducting monolayers: spin-dependent carrier mobility anisotropy and elliptic dichroism.

Cong Wang; Xieyu Zhou; Linwei Zhou; Ninghua Tong; Wei Ji


arXiv: Materials Science | 2018

Two ultra-stable novel allotropes of Tellurium few-layers

Cong Wang; Linlu Wu; Xieyu Zhou; Linwei Zhou; Peng-Jie Guo; Kai Liu; Zhong-Yi Lu; Zhihai Cheng; Yang Chai; Wei Ji


Physical Review B | 2018

Layer and doping tunable ferromagnetic order in two-dimensional Cr S 2 layers

Cong Wang; Xieyu Zhou; Yuhao Pan; Jingsi Qiao; Xianghua Kong; Chao-Cheng Kaun; Wei Ji


Bulletin of the American Physical Society | 2018

Engineering of the point defect in WSe 2 : a strong spin splitting of the localized defect state

Chendong Zhang; Cong Wang; Feng Yang; Ming-Yang Li; Lain-Jong Li; Wang Yao; Wei Ji; Chih-Kang Shih


arXiv: Materials Science | 2017

Layer- and doping-tunable long range ferromagnetic order-ing in two-dimensional CrS2

Cong Wang; Xieyu Zhou; Yuhao Pan; Jingsi Qiao; Xianghua Kong; Chao-Cheng Kaun; Wei Ji


Archive | 2017

Strong inter-chain coupling and exceptionally high carrier mobility in stretchable Te few-layers

Jingsi Qiao; Yuhao Pan; Cong Wang; Yang Chai; Wei Ji

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Wei Ji

Renmin University of China

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Jingsi Qiao

Renmin University of China

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Yuhao Pan

Renmin University of China

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Yang Chai

Hong Kong Polytechnic University

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Xieyu Zhou

Renmin University of China

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Feng Yang

Renmin University of China

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