scispace - formally typeset
Open AccessJournal ArticleDOI

Germanene: a novel two-dimensional germanium allotrope akin to graphene and silicene

Reads0
Chats0
TLDR
In this article, an atom-thin, ordered, two-dimensional multi-phase film was grown in situ through germanium molecular beam epitaxy using a gold surface as a substrate.
Abstract
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium molecular beam epitaxy using a gold (111) surface as a substrate. Its growth is similar to the formation of silicene layers on silver (111) templates. One of the phases, forming large domains, as observed in scanning tunneling microscopy, shows a clear, nearly flat, honeycomb structure. Thanks to thorough synchrotron radiation core-level spectroscopy measurements and advanced density functional theory calculations we can identify it as a ?3????3 R(30?) germanene layer in conjunction with a ?7????7 R(19.1?) Au(111) supercell, presenting compelling evidence of the synthesis of the germanium-based cousin of graphene on gold.

read more

Content maybe subject to copyright    Report

Citations
More filters
Journal ArticleDOI

2D Crystal-Based Fibers: Status and Challenges.

TL;DR: This Review provides directions and guidelines for developing new 2D crystal-based fibers and exploring their potentials in the fields of smart wearable devices.
Journal ArticleDOI

On the stability of surfactant-stabilised few-layer black phosphorus in aqueous media

TL;DR: In this paper, the stability of a few-layer black phosphorus has been studied using a range of spectroscopic techniques, showing that the material is meta-stable in aqueous media, degrading over time mainly to phosphoric acids.
Journal ArticleDOI

Epitaxial Growth of Two-Dimensional Insulator Monolayer Honeycomb BeO

TL;DR: In this paper, a 2D insulator composed of a single atomic sheet of honeycomb structure BeO (h-BeO), although its bulk counterpart has a wurtzite structure, is reported.
References
More filters
Journal ArticleDOI

Two- and one-dimensional honeycomb structures of silicon and germanium.

TL;DR: In this paper, first-principles calculations of structure optimization, phonon modes, and finite temperature molecular dynamics predict that silicon and germanium can have stable, two-dimensional, low-buckled, honeycomb structures.
Journal Article

Two- and one-dimensional honeycomb structures of silicon and germanium

TL;DR: First-principles calculations of structure optimization, phonon modes, and finite temperature molecular dynamics predict that silicon and germanium can have stable, two-dimensional, low-buckled, honeycomb structures, which show remarkable electronic and magnetic properties, which are size and orientation dependent.
Journal ArticleDOI

Quantum spin Hall effect in silicene and two-dimensional germanium.

TL;DR: It is demonstrated that silicene with topologically nontrivial electronic structures can realize the quantum spin Hall effect (QSHE) by exploiting adiabatic continuity and the direct calculation of the Z(2) topological invariant.
Journal ArticleDOI

Experimental Evidence for Epitaxial Silicene on Diboride Thin Films

TL;DR: It is shown that two-dimensional, epitaxial silicene forms through surface segregation on zirconium diboride thin films grown on Si wafers and that the buckling and thus the electronic properties of silicenes are modified by epitaxials strain.
Journal ArticleDOI

Low-energy effective Hamiltonian involving spin-orbit coupling in silicene and two-dimensional germanium and tin

TL;DR: In this article, the authors derived the low energy effective Hamiltonian involving spin-orbit coupling (SOC) for silicene, which is the analog to the graphene quantum spin Hall effect (QSHE) Hamiltonian.
Related Papers (5)