Two-dimensional (2D) topological insulators (TIs) hold promise for applications in spintronics based on the fact that the propagation direction of an edge electronic state of a 2D TI is locked to its spin orientation. Here, using first-principles calculations, we predict a family of robust 2D TIs in monolayer square transition-metal dichalcogenides MX2(M=Mo,W;X=S,Se,Te), which show sizeable intrinsic nontrivial band gaps ranged from 24 to 187 meV, thus ensuring the quantum spin Hall (QSH) effect at room temperature. Different from the most known 2D TIs with comparable band gaps, these sizeable energy gaps arise from the strong spin-orbit interaction related to d electrons of the Mo/W atoms. A pair of topologically protected helical edge sta...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
First-principles calculations and extensive analyses reveal that the H phase of two-dimensional (2D)...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Quantum spin Hall (QSH) effect materials feature edge states that are topologically protected from b...
Single layered transition metal dichalcogenides have attracted tremendous research interest due to t...
†These authors contributed equally to this work. We predict a new class of large-gap quantum spin Ha...
We propose to engineer time-reversal-invariant topological insulators in two-dimensional crystals of...
So far, several transition metal dichalcogenide (TMDC)–based two-dimensional (2D) topological insula...
A quantum spin Hall (QSH) insulator is a novel two-dimensional quantum state of matter that features...
A quantum spin Hall (QSH) insulator is a novel two-dimensional quantum state of matter that features...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
First-principles calculations and extensive analyses reveal that the H phase of two-dimensional (2D)...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Quantum spin Hall (QSH) effect materials feature edge states that are topologically protected from b...
Single layered transition metal dichalcogenides have attracted tremendous research interest due to t...
†These authors contributed equally to this work. We predict a new class of large-gap quantum spin Ha...
We propose to engineer time-reversal-invariant topological insulators in two-dimensional crystals of...
So far, several transition metal dichalcogenide (TMDC)–based two-dimensional (2D) topological insula...
A quantum spin Hall (QSH) insulator is a novel two-dimensional quantum state of matter that features...
A quantum spin Hall (QSH) insulator is a novel two-dimensional quantum state of matter that features...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
Topological insulators have been studied primarily with regard to the behaviour of electrons. A theo...
First-principles calculations and extensive analyses reveal that the H phase of two-dimensional (2D)...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...