The adsorption mechanism of individual volatile organic compounds (VOCs) on the surface of graphene is investigated using nonempirical van der Waals (vdW) density functional theory. The VOCs chosen as adsorbates are ethanol, benzene, and toluene, which are found in the exhaled breath of lung cancer patients. The most energetically favorable configurations of the adsorbed systems, adsorption energy profiles, charge transfer, and work function are calculated. The fundamental insight into the interactions between the considered VOC molecules and graphene through molecular doping, i.e., charge transfer, is estimated. It is found that the adsorption energy is highly sensitive to the vdW functionals. Adsorption energies calculated by revPBE-vdW a...
The adsorption of neutral (poly)-aromatic, antiaromatic, and more generally π-conjugated systems on ...
Understanding strength and nature of noncovalent binding to surfaces imposes significant challenge b...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...
We present a theory study of the physisorption of the series of methylbenzenes (toluene, xylene and ...
We present a theory study of the physisorption of the series of methylbenzenes (toluene, xylene and ...
This diploma thesis is focused on calculation of both structure and electronic properties of the gra...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
In this work, we have designed and simulated a graphene field-effect transistor, GFET, with the purp...
A computational study of chloroform (CHCl3) and other trihalomethanes (THMs) adsorbed on graphene is...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
The adsorption of organic molecules on graphene surfaces is a crucial process in many different rese...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
Graphene demonstrates many exceptional properties that makes it a promising candidate in various app...
The interaction of pure graphene nano sheet and Al-doped graphene nano sheet with SO2 pollutant gas ...
The adsorption of neutral (poly)-aromatic, antiaromatic, and more generally π-conjugated systems on ...
Understanding strength and nature of noncovalent binding to surfaces imposes significant challenge b...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...
We present a theory study of the physisorption of the series of methylbenzenes (toluene, xylene and ...
We present a theory study of the physisorption of the series of methylbenzenes (toluene, xylene and ...
This diploma thesis is focused on calculation of both structure and electronic properties of the gra...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
In this work, we have designed and simulated a graphene field-effect transistor, GFET, with the purp...
A computational study of chloroform (CHCl3) and other trihalomethanes (THMs) adsorbed on graphene is...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
The adsorption of organic molecules on graphene surfaces is a crucial process in many different rese...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
Graphene demonstrates many exceptional properties that makes it a promising candidate in various app...
The interaction of pure graphene nano sheet and Al-doped graphene nano sheet with SO2 pollutant gas ...
The adsorption of neutral (poly)-aromatic, antiaromatic, and more generally π-conjugated systems on ...
Understanding strength and nature of noncovalent binding to surfaces imposes significant challenge b...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...