Electrical transport in monolayer graphene on SrTiO3 (STO) thin film is examined in order to promote gate-voltage scaling using a high-k dielectric material. The atomically flat surface of thin STO layer epitaxially grown on Nb-doped STO single-crystal substrate offers good adhesion between the high-k film and graphene, resulting in nonhysteretic conductance as a function of gate voltage at all temperatures down to 2 K. The two-terminal conductance quantization under magnetic fields corresponding to quantum Hall states survives up to 200 K at a magnetic field of 14 T. In addition, the substantial shift of charge neutrality point in graphene seems to correlate with the temperature-dependent dielectric constant of the STO thin film, and its e...
To meet the demands for continuous transistor scaling and performance improvements required by the I...
Graphene, a single atomic layer of carbon atoms, has been extensively studied in recent years. Its u...
Graphene is an exciting new atomically-thin two-dimensional (2D) system of carbon atoms organized in...
Quantum Hall conductance in monolayer graphene on an epitaxial SrTiO3 (STO) thin film is studied to ...
We report unique electrical anisotropy and dielectric properties of graphene oxide (GO) thin films, ...
We report transport measurements through graphene on SrTiO3 substrates as a function of magnetic fie...
Graphene has become one of the most widely researched materials lately since its discovery in 2004. ...
The amphiphilic nature of graphene oxide (GO) is exploited as a seed layer to facilitate the ultrath...
Individual graphene oxide sheets subjected to chemical reduction were electrically characterized as ...
We report temperature dependent electrical transport properties of high mobility reduced graphene ox...
We demonstrate a top-gated field effect transistor made of a reduced graphene oxide (RGO) monolayer...
Since the discovery of the quantum Hall effect in 1980, it has attracted intense interest in condens...
Graphene's superlative electrical and mechanical properties, combined with its compatibility with ex...
Heterointerfaces coupling complex oxides exhibit coexisting functional properties such as magnetism,...
Novel two-dimensional materials with weak interlayer Van der Waals interaction are fantastic platfor...
To meet the demands for continuous transistor scaling and performance improvements required by the I...
Graphene, a single atomic layer of carbon atoms, has been extensively studied in recent years. Its u...
Graphene is an exciting new atomically-thin two-dimensional (2D) system of carbon atoms organized in...
Quantum Hall conductance in monolayer graphene on an epitaxial SrTiO3 (STO) thin film is studied to ...
We report unique electrical anisotropy and dielectric properties of graphene oxide (GO) thin films, ...
We report transport measurements through graphene on SrTiO3 substrates as a function of magnetic fie...
Graphene has become one of the most widely researched materials lately since its discovery in 2004. ...
The amphiphilic nature of graphene oxide (GO) is exploited as a seed layer to facilitate the ultrath...
Individual graphene oxide sheets subjected to chemical reduction were electrically characterized as ...
We report temperature dependent electrical transport properties of high mobility reduced graphene ox...
We demonstrate a top-gated field effect transistor made of a reduced graphene oxide (RGO) monolayer...
Since the discovery of the quantum Hall effect in 1980, it has attracted intense interest in condens...
Graphene's superlative electrical and mechanical properties, combined with its compatibility with ex...
Heterointerfaces coupling complex oxides exhibit coexisting functional properties such as magnetism,...
Novel two-dimensional materials with weak interlayer Van der Waals interaction are fantastic platfor...
To meet the demands for continuous transistor scaling and performance improvements required by the I...
Graphene, a single atomic layer of carbon atoms, has been extensively studied in recent years. Its u...
Graphene is an exciting new atomically-thin two-dimensional (2D) system of carbon atoms organized in...