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Photonics and optoelectronics of two-dimensional materials beyond graphene
Apart from conventional materials, the study of two-dimensional (2D) materials has emerged
as a significant field of study for a variety of applications. Graphene-like 2D materials are …
as a significant field of study for a variety of applications. Graphene-like 2D materials are …
Metastable MoS2: Crystal Structure, Electronic Band Structure, Synthetic Approach and Intriguing Physical Properties
The 2H molybdenum disulfide (MoS2), as a stable hexagonal phase, has been one of the
most studied transition metal dichalcogenides over the past decades. In the last five years …
most studied transition metal dichalcogenides over the past decades. In the last five years …
Two-dimensional topological insulators: Progress and prospects
Two-dimensional topological insulators (2D TIs) are a remarkable class of atomically thin
layered materials that exhibit unique symmetry-protected helical metallic edge states with an …
layered materials that exhibit unique symmetry-protected helical metallic edge states with an …
2D layered transition metal dichalcogenides (MoS2): synthesis, applications and theoretical aspects
Recently, graphene and other two-dimensional (2D) transition metal dichalcogenides
(TMDCs) have been widely explored due to their unique optical, mechanical, electrical and …
(TMDCs) have been widely explored due to their unique optical, mechanical, electrical and …
Large-gap two-dimensional topological insulator in oxygen functionalized MXene
Two-dimensional (2D) topological insulators (TIs) have been recognized as a new class of
quantum state of matter. They are distinguished from normal 2D insulators with their …
quantum state of matter. They are distinguished from normal 2D insulators with their …
Large-Gap Quantum Spin Hall State in MXenes: d-Band Topological Order in a Triangular Lattice
MXenes are a large family of two-dimensional (2D) early transition metal carbides that have
shown great potential for a host of applications ranging from electrodes in supercapacitors …
shown great potential for a host of applications ranging from electrodes in supercapacitors …
Experimental Observation of Topological Edge States at the Surface Step Edge of the Topological Insulator
XB Li, WK Huang, YY Lv, KW Zhang, CL Yang… - Physical review …, 2016 - APS
We report an atomic-scale characterization of ZrTe 5 by using scanning tunneling
microscopy. We observe a bulk band gap of∼ 80 meV with topological edge states at the …
microscopy. We observe a bulk band gap of∼ 80 meV with topological edge states at the …
Evidence for Topological Edge States in a Large Energy Gap near the Step Edges on the Surface of
Two-dimensional topological insulators with a large bulk band gap are promising for
experimental studies of quantum spin Hall effect and for spintronic device applications …
experimental studies of quantum spin Hall effect and for spintronic device applications …
Altermagnetism and superconductivity in a multiorbital model
Motivated by exploring correlated multiorbital altermagnets (A ℓ Ms) we study minimal tJ
models on the square-octagon lattice, which favors such a collinear magnetic order. While …
models on the square-octagon lattice, which favors such a collinear magnetic order. While …
Two-dimensional oxide topological insulator with iron-pnictide superconductor LiFeAs structure
By using first-principles calculations, we propose that ZrSiO can be looked at as a three-
dimensional (3D) oxide weak topological insulator (TI) and its single layer is a long-sought …
dimensional (3D) oxide weak topological insulator (TI) and its single layer is a long-sought …