activity
20062021
most citedGraphene switch design: an illustration of the Klein paradox

1 citations · 2 across the 3 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall20211 cited

Higher-Order Topology in Monolayer FeSe

Gan Zhao, Haimen Mu, Huimin Zhang +1

Generally, the topological corner state in two-dimensional second-order topological insulator (2D SOTI) is equivalent to the well-known domain wall state, originated from the mass-…

cond-mat.str-el2020

Doping dependence of electronic structure of infinite-layer NdNiO2

Zhao Liu, Chenchao Xu, Chao Cao +3

We investigate the electronic structure of nickelate superconductor NdNiO2 upon hole doping, by means of density-functional theory and dynamical mean-field theory. We demonstrate t…

cond-mat.str-el2019

Electronic and Magnetic Structure of Infinite-layer : Trace of Antiferromagnetic Metal

Zhao Liu, Zhi Ren, W. Zhu +2

The recent discovery of Sr-doped infinite-layer nickelate [D. Li et al. Nature 572, 624 (2019)] offers an exciting platform for investigating unconventional supe…

cond-mat.mtrl-sci2018

Two-dimensional Penta-Pt2N4: an ideal material for nanoelectronics

Zhao Liu, Haidi Wang, Jiuyu Sun +2

Since the discovery of graphene, two-dimensional (2D) materials have paved a new routine for designing high-performance nanoelectronic devices. To facilitate the device application…

cond-mat.mes-hall2007

An insight into the electronic structure of graphene: from monolayer to multi-layer

Z. F. Wang, Huaixiu Zheng, Q. W. Shi +3

In this paper, we analytically investigate the electronic structure of Bernal stacking (AB stacking) graphene evolving from monolayer (a zero-gap semiconductor with a linear Dirac-…

cond-mat.mes-hall20061 cited

Graphene switch design: an illustration of the Klein paradox

Q. W. Shi, Z. F. Wang, Jie Chen +5

An armchair graphene ribbon switch has been designed based on the principle of the Klein paradox. The resulting switch displays an excellent on-off ratio performance. Anomalous tun…