We propose and demonstrate gold nanoparticle decorated graphene as an ideal system for studying carrier inhomogeneity induced magnetoresistance. Large linear magnetoresistance has been realized in the system and the magnitude can be tuned by a gate. By detailed study, we provide an empirical expression, which reveals the dependence of the magnetoresistance on density fluctuations and mobility. The induced magnetoresistance is temperature independent and can be strongly enhanced by the high mobility of graphene, hence offers potential for magnetic sensor applications. (C) 2014 AIP Publishing LLC.Physics, AppliedSCI(E)EI1ARTICLExswu@pku.edu.cn14null10
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
We provide ab initio study on a spin valve device that is based on bare ferromagnetic zigzag-edged g...
We report the magnetoresistance (MR) in single-layer graphene field-effect transistors at different ...
Graphene has unique electronic properties1,2, and graphene nanoribbons are of particular interest be...
There is a huge demand for magnetoresistance (MR) sensors with high sensitivity, low energy consumpt...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
Magnetoresistance (MR) in bilayer graphene was experimentally investigated by varying magnetic-field...
Artificial disorder was introduced gradually into monolayer graphene by controlling Ga(+) ion irradi...
A large magnetoresistance (MR) effect of few-layers graphene between two non-magnetic metal electrod...
We report a nonsaturating linear magnetoresistance in charge-compensated bilayer graphene in a tempe...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
We investigate extraordinary magnetoresistance (EMR) of inhomogeneous graphene-metal hybrids using f...
Magnetoresistance (MR) in bilayer graphene was experimentally investigated by varying magnetic-field...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
We provide ab initio study on a spin valve device that is based on bare ferromagnetic zigzag-edged g...
We report the magnetoresistance (MR) in single-layer graphene field-effect transistors at different ...
Graphene has unique electronic properties1,2, and graphene nanoribbons are of particular interest be...
There is a huge demand for magnetoresistance (MR) sensors with high sensitivity, low energy consumpt...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
Magnetoresistance (MR) in bilayer graphene was experimentally investigated by varying magnetic-field...
Artificial disorder was introduced gradually into monolayer graphene by controlling Ga(+) ion irradi...
A large magnetoresistance (MR) effect of few-layers graphene between two non-magnetic metal electrod...
We report a nonsaturating linear magnetoresistance in charge-compensated bilayer graphene in a tempe...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
We investigate extraordinary magnetoresistance (EMR) of inhomogeneous graphene-metal hybrids using f...
Magnetoresistance (MR) in bilayer graphene was experimentally investigated by varying magnetic-field...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...
We have investigated the magnetoresistance of lithographically prepared single-layer graphene nanori...