Since lattice strain and charge density affect various material properties of graphene, a reliable and efficient method is required for quantification of the two variables. While Raman spectroscopy is sensitive and non-destructive, its validity towards precise quantification of chemical charge doping has not been tested. In this work, we quantified in-situ the fractional frequency change of 2D and G peaks in response of charge density induced by sulfuric acid solution as well as native lattice strain. Based on the experimental data and theoretical corroboration, we presented an optical method that simultaneously determines strain and chemically-induced charge density for three popular excitation wavelengths of 457, 514 and 633 nm. In order ...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
The successful integration of graphene in future technologies, such as filtration and nanoelectronic...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
The properties of graphene depend sensitively on strain and doping affecting its behavior in devices...
The properties of graphene depend sensitively on strain and doping affecting its behavior in devices...
© 2021 Korean Chemical Society, Seoul & Wiley-VCH GmbHTwo-dimensional materials represented by graph...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Raman spectroscopy was used to study the structure of graphene synthesized from methane by chemical ...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
International audienceIn this communication, we report data recorded by in situ Raman experiments on...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
We investigate local doping concentration modulation of graphene flakes on a SiO2/Si substrate that ...
International audienceIn this communication, we report data recorded by in situ Raman experiments on...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
The successful integration of graphene in future technologies, such as filtration and nanoelectronic...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
The properties of graphene depend sensitively on strain and doping affecting its behavior in devices...
The properties of graphene depend sensitively on strain and doping affecting its behavior in devices...
© 2021 Korean Chemical Society, Seoul & Wiley-VCH GmbHTwo-dimensional materials represented by graph...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Raman spectroscopy was used to study the structure of graphene synthesized from methane by chemical ...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
International audienceIn this communication, we report data recorded by in situ Raman experiments on...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
We investigate local doping concentration modulation of graphene flakes on a SiO2/Si substrate that ...
International audienceIn this communication, we report data recorded by in situ Raman experiments on...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...
The successful integration of graphene in future technologies, such as filtration and nanoelectronic...
We investigated the inhomogeneities in the charge density of unintentionally doped graphene on SiO2 ...