The intriguing properties of graphene have inspired the pursuit of two-dimensional materials with honeycomb structure. Here we achieved the synthesis of a monolayer transition-metal monochalcogenide AgTe on Ag(111) by tellurization of the substrate. High-resolution scanning tunneling microscopy, combined with low-energy electron diffraction, angle-resolved photoemission spectroscopy, and density functional theory calculations, demonstrates the planar honeycomb structure of AgTe. The first-principles calculations further predict that, protected by the in-plane mirror reflection symmetry, there are two Dirac node-line fermions existing in the free-standing AgTe when spin–orbit coupling (SOC) is ignored. In fact, the SOC leads to the gap openi...
State-of-the-art theoretical studies anticipate a 2D Dirac system in the "heavy'' analogues of graph...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Silver chalcogenides have attracted significant interest as promising candidates for novel topologic...
Inspired by the unique properties of graphene, research efforts have broadened to investigations of ...
Group-V elemental monolayers were recently predicted to exhibit exotic physical properties such as n...
International audienceTwo-dimensional (2D) honeycomb lattices beyond graphene, such as germanene, pr...
Honeycomb structures have already fascinated mankind since ancient times. They were observed in vari...
The interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type electronic ba...
\u3cp\u3eThe interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type elect...
Monolayer transition metal dichalcogenides (TMDCs) in the 1T′ structural phase have drawn a great de...
We present evidence of topological surface states in ß-Ag 2Te through first-principles calculations,...
Structural symmetry-breaking plays a crucial role in determining the electronic band structures of t...
International audienceThe recent experimental realization of self-assembled honeycomb superlattices ...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...
Two-dimensional (2D) metal-organic frameworks (MOFs) have been recently proposed as a flexible mater...
State-of-the-art theoretical studies anticipate a 2D Dirac system in the "heavy'' analogues of graph...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Silver chalcogenides have attracted significant interest as promising candidates for novel topologic...
Inspired by the unique properties of graphene, research efforts have broadened to investigations of ...
Group-V elemental monolayers were recently predicted to exhibit exotic physical properties such as n...
International audienceTwo-dimensional (2D) honeycomb lattices beyond graphene, such as germanene, pr...
Honeycomb structures have already fascinated mankind since ancient times. They were observed in vari...
The interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type electronic ba...
\u3cp\u3eThe interest in 2-dimensional systems with a honeycomb lattice and related Dirac-type elect...
Monolayer transition metal dichalcogenides (TMDCs) in the 1T′ structural phase have drawn a great de...
We present evidence of topological surface states in ß-Ag 2Te through first-principles calculations,...
Structural symmetry-breaking plays a crucial role in determining the electronic band structures of t...
International audienceThe recent experimental realization of self-assembled honeycomb superlattices ...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...
Two-dimensional (2D) metal-organic frameworks (MOFs) have been recently proposed as a flexible mater...
State-of-the-art theoretical studies anticipate a 2D Dirac system in the "heavy'' analogues of graph...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Silver chalcogenides have attracted significant interest as promising candidates for novel topologic...