When a single-layer graphene (SLG) is on SiO2 substrates, the charge exchange at their interface results in a dipole, which direction strongly depends on the contact potential difference between the SLG and the substrates. Due to the longer experimental charge screening length of SLG than its thickness, the charge redistribution imposes effective p or n doping to SLG films. The substrate-dependent doping of SLG films is further confirmed by Raman and electrical measurements. Also, the unique electronic structures of SLG films make them sensitive to the doping rather than effective gating from the SiO2 substrates.Published versio
We present spatially resolved Raman images of the G and 2D lines of single-layer graphene flakes. Th...
This manuscript reports the first example of charge-doping-induced reactivity enhancement in macrosc...
Electromechanical response of materials is a key property for various applications ranging from actu...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
As being only one atom thick, most of the device applications require graphene to be partially or fu...
Graphene has attracted great interest due to their unique electronic structures, physical properties...
International audienceIn this communication, we report data recorded by in situ Raman experiments on...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
Single-layer graphene (SLG) shows an anomalously large surface charging effect during scanning photo...
The ultimate surface exposure provided by graphene monolayer makes it the ideal sensor platform but ...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
We present Kelvin probe force microscopy measurements of single-and few-layer graphene resting on Si...
While the effect of electrochemical doping on single-layer graphene (SG) with holes and electrons ha...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
We present spatially resolved Raman images of the G and 2D lines of single-layer graphene flakes. Th...
This manuscript reports the first example of charge-doping-induced reactivity enhancement in macrosc...
Electromechanical response of materials is a key property for various applications ranging from actu...
[[sponsorship]]應用科學研究中心[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/G...
As being only one atom thick, most of the device applications require graphene to be partially or fu...
Graphene has attracted great interest due to their unique electronic structures, physical properties...
International audienceIn this communication, we report data recorded by in situ Raman experiments on...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
Single-layer graphene (SLG) shows an anomalously large surface charging effect during scanning photo...
The ultimate surface exposure provided by graphene monolayer makes it the ideal sensor platform but ...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
We present Kelvin probe force microscopy measurements of single-and few-layer graphene resting on Si...
While the effect of electrochemical doping on single-layer graphene (SG) with holes and electrons ha...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
We present spatially resolved Raman images of the G and 2D lines of single-layer graphene flakes. Th...
This manuscript reports the first example of charge-doping-induced reactivity enhancement in macrosc...
Electromechanical response of materials is a key property for various applications ranging from actu...