cited By 14International audienceWe present a detailed periodic ab initio quantum-mechanical simulation of two recently proposed systems, namely hydrogenated porous graphene (HPG) and biphenyl carbon (BPC), using hybrid HF-DFT functionals and all-electron Gaussian-type basis sets. The equilibrium geometry, the vibrational spectrum (including IR intensities), the full set of components of the polarizability and hyperpolarizability tensors are provided, the latter evaluated through a coupled-perturbed KS/HF scheme. IR and Raman spectra for the two systems are quite different, and differ also from graphene, thus permitting their experimental identification. It is then shown that small defects inserted into the graphene sheet lead to finite val...
The considerable demand for novel materials with specific properties has motivated the researchers t...
The linear and nonlinear optical susceptibilities of bilayer pristine graphene (BLPG) and H2S single...
The considerable demand for novel materials with specific properties has motivated the researchers t...
We present a detailed periodic ab initio quantum-mechanical simulation of two recently proposed syst...
Graphene is considered one of the most promising materials for future electronic. However, in its pr...
Graphene is considered one of the most promising materials for future electronics. However, in its p...
Graphene is considered one of the most promising materials for future electronics. However, in its p...
Graphene is considered one of the most promising materials for future electronics. However, in its p...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
Importance of covalent bonded two-dimensional monolayer nanostructures and also hydrocarbons is unde...
Penta-graphene has recently been proposed as a new allotrope of carbon composed of pure pentagons, a...
Graphene has been one of the hottest topics in materials science in the last years. Because of its s...
The considerable demand for novel materials with specific properties has motivated the researchers t...
The linear and nonlinear optical susceptibilities of bilayer pristine graphene (BLPG) and H2S single...
The considerable demand for novel materials with specific properties has motivated the researchers t...
We present a detailed periodic ab initio quantum-mechanical simulation of two recently proposed syst...
Graphene is considered one of the most promising materials for future electronic. However, in its pr...
Graphene is considered one of the most promising materials for future electronics. However, in its p...
Graphene is considered one of the most promising materials for future electronics. However, in its p...
Graphene is considered one of the most promising materials for future electronics. However, in its p...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
We present a quantum chemical investigation of the vibrational frequencies and Raman intensities of ...
Importance of covalent bonded two-dimensional monolayer nanostructures and also hydrocarbons is unde...
Penta-graphene has recently been proposed as a new allotrope of carbon composed of pure pentagons, a...
Graphene has been one of the hottest topics in materials science in the last years. Because of its s...
The considerable demand for novel materials with specific properties has motivated the researchers t...
The linear and nonlinear optical susceptibilities of bilayer pristine graphene (BLPG) and H2S single...
The considerable demand for novel materials with specific properties has motivated the researchers t...