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Graphene, hexagonal boron nitride, and their heterostructures: properties and applications
J Wang, F Ma, M Sun - RSC advances, 2017 - pubs.rsc.org
In recent years, two-dimensional atomic-level thickness crystal materials have attracted
widespread interest such as graphene, hexagonal boron nitride (h-BN), silicene …
widespread interest such as graphene, hexagonal boron nitride (h-BN), silicene …
Electrical properties and applications of graphene, hexagonal boron nitride (h-BN), and graphene/h-BN heterostructures
Abstract Two-dimensional (2D) graphene has unique electrical properties such as high
mobility and ballistic transport at room temperature. Two-dimensional hexagonal boron …
mobility and ballistic transport at room temperature. Two-dimensional hexagonal boron …
Electronic transport in two-dimensional graphene
A broad review of fundamental electronic properties of two-dimensional graphene with the
emphasis on density and temperature-dependent carrier transport in doped or gated …
emphasis on density and temperature-dependent carrier transport in doped or gated …
Hot carrier–assisted intrinsic photoresponse in graphene
We report on the intrinsic optoelectronic response of high-quality dual-gated monolayer and
bilayer graphene pn junction devices. Local laser excitation (of wavelength 850 …
bilayer graphene pn junction devices. Local laser excitation (of wavelength 850 …
Exceptional ballistic transport in epitaxial graphene nanoribbons
Graphene nanoribbons will be essential components in future graphene nanoelectronics.
However, in typical nanoribbons produced from lithographically patterned exfoliated …
However, in typical nanoribbons produced from lithographically patterned exfoliated …
Direct observation of a widely tunable bandgap in bilayer graphene
The electronic bandgap is an intrinsic property of semiconductors and insulators that largely
determines their transport and optical properties. As such, it has a central role in modern …
determines their transport and optical properties. As such, it has a central role in modern …
Electron-electron interactions in graphene: Current status and perspectives
The problem of electron-electron interactions in graphene is reviewed. Starting from the
screening of long-range interactions in these systems, the existence of an emerging Dirac …
screening of long-range interactions in these systems, the existence of an emerging Dirac …
The electronic properties of graphene
This article reviews the basic theoretical aspects of graphene, a one-atom-thick allotrope of
carbon, with unusual two-dimensional Dirac-like electronic excitations. The Dirac electrons …
carbon, with unusual two-dimensional Dirac-like electronic excitations. The Dirac electrons …
High-frequency, scaled graphene transistors on diamond-like carbon
Owing to its high carrier mobility and saturation velocity, graphene has attracted enormous
attention in recent years,,,,. In particular, high-performance graphene transistors for radio …
attention in recent years,,,,. In particular, high-performance graphene transistors for radio …
Monitoring dopants by Raman scattering in an electrochemically top-gated graphene transistor
The recent discovery of graphene,, has led to many advances in two-dimensional physics
and devices,. The graphene devices fabricated so far have relied on SiO2 back gating …
and devices,. The graphene devices fabricated so far have relied on SiO2 back gating …