To date, a number of two-dimensional (2D) topological insulators (TIs) have been realized in Group 14 elemental honeycomb lattices, but all are inversionsymmetric. Here, based on first-principles calculations, we predict a new family of 2D inversion-asymmetric TIs with sizeable bulk gaps from 105 meV to 284 meV, in X2–GeSn (X = H, F, Cl, Br, I) monolayers, making them in principle suitable for room-temperature applications. The nontrivial topological characteristics of inverted band orders are identified in pristine X2–GeSn with X = (F, Cl, Br, I), whereas H2–GeSn undergoes a nontrivial band inversion at 8% lattice expansion. Topologically protected edge states are identified in X2–GeSn with X = (F, Cl, Br, I), as well as in strained H2–GeS...
Two-dimensional (2D) topological insulators (TIs), also known as quantum spin Hall (QSH) insulators,...
Large-gap quantum spin Hall insulators are promising materials for room-temperature applications bas...
Large-gap quantum spin Hall insulators are promising materials for room-temperature applications bas...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Two-dimensional (2D) topological insulators (TIs) hold promise for applications in spintronics based...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Quantum spin Hall insulators make up a class of two-dimensional materials with a finite electronic b...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Quantum spin Hall insulators make up a class of two-dimensional materials with a finite electronic b...
The search for inversion-asymmetric topological insulators (IATIs) persists as an effect for realizi...
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...
5siQuantum spin Hall insulators make up a class of two-dimensional materials with a finite electroni...
Two-dimensional (2D) topological insulators (TIs), also known as quantum spin Hall (QSH) insulators,...
Large-gap quantum spin Hall insulators are promising materials for room-temperature applications bas...
Large-gap quantum spin Hall insulators are promising materials for room-temperature applications bas...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Topological insulators (TIs) are promising for achieving dissipationless transport devices due to th...
Two-dimensional (2D) topological insulators (TIs) hold promise for applications in spintronics based...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Quantum spin Hall insulators make up a class of two-dimensional materials with a finite electronic b...
Quantum spin Hall (QSH) insulators are a peculiar phase of matter exhibiting excellent quantum trans...
Quantum spin Hall insulators make up a class of two-dimensional materials with a finite electronic b...
The search for inversion-asymmetric topological insulators (IATIs) persists as an effect for realizi...
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...
5siQuantum spin Hall insulators make up a class of two-dimensional materials with a finite electroni...
Two-dimensional (2D) topological insulators (TIs), also known as quantum spin Hall (QSH) insulators,...
Large-gap quantum spin Hall insulators are promising materials for room-temperature applications bas...
Large-gap quantum spin Hall insulators are promising materials for room-temperature applications bas...