A theoretical Density Functional Theory study was performed for a benzene molecule in water cages. Two DFT functionals (B3LYP and BLYP) were employed. The optimized geometries of the studied clusters were used to calculate the aromaticity of benzene in a condensed phase using the aromaticity indices: HOMA, NICS, PDI, and H. The results were compared with aromaticity of a single benzene molecule in the gas phase and in the solvent environment provided by the PCM continuum model. It is argued that high aromaticity of benzene in the gas phase is retained in the water environment
Accurate values for thermodynamic properties throughout the fluid phase are a requirement for the de...
This Letter provides an accurate and efficient method to obtain gas-phase ionization potentials for ...
Author Institution: California institute of Technology, Mail Stop 127-72, Pasadena, CA 91125; Califo...
Energy gaps between the highest-occupied molecular orbital and lowest-unoccupied molecular orbital (...
We have studied the topological and local aromaticity of BN-substituted benzene, pyrene, chrysene, t...
The physical properties of aromatic and condensed ring especially polybenzene compounds are severely...
The article "Benzene forms hydrogen bonds with water" by S. Suzuki, et al. (14 August., p. 942) repr...
The multiple interaction between water, benzene, and hexafluorobenzene was discussed in light of an ...
The interaction of water with polycyclic aromatic hydrocarbons, from benzene to graphene, is inve...
The interactions of water with polycyclic aromatic hydrocarbons, from benzene to graphene, are inves...
Structures and binding in small water-benzene complexes (1-8 water molecules and 1-2 benzene molecul...
The interactions of aromatic groups have been identified as playing a crucial role in many systems o...
The transfer of benzene and toluene from gas phase into water is a spontaneous process at room tempe...
Density functional theory calculations have been performed to explore the substituent effect on benz...
The influence of fluorine substitutions on the stability of benzene is examined by using the Hartree...
Accurate values for thermodynamic properties throughout the fluid phase are a requirement for the de...
This Letter provides an accurate and efficient method to obtain gas-phase ionization potentials for ...
Author Institution: California institute of Technology, Mail Stop 127-72, Pasadena, CA 91125; Califo...
Energy gaps between the highest-occupied molecular orbital and lowest-unoccupied molecular orbital (...
We have studied the topological and local aromaticity of BN-substituted benzene, pyrene, chrysene, t...
The physical properties of aromatic and condensed ring especially polybenzene compounds are severely...
The article "Benzene forms hydrogen bonds with water" by S. Suzuki, et al. (14 August., p. 942) repr...
The multiple interaction between water, benzene, and hexafluorobenzene was discussed in light of an ...
The interaction of water with polycyclic aromatic hydrocarbons, from benzene to graphene, is inve...
The interactions of water with polycyclic aromatic hydrocarbons, from benzene to graphene, are inves...
Structures and binding in small water-benzene complexes (1-8 water molecules and 1-2 benzene molecul...
The interactions of aromatic groups have been identified as playing a crucial role in many systems o...
The transfer of benzene and toluene from gas phase into water is a spontaneous process at room tempe...
Density functional theory calculations have been performed to explore the substituent effect on benz...
The influence of fluorine substitutions on the stability of benzene is examined by using the Hartree...
Accurate values for thermodynamic properties throughout the fluid phase are a requirement for the de...
This Letter provides an accurate and efficient method to obtain gas-phase ionization potentials for ...
Author Institution: California institute of Technology, Mail Stop 127-72, Pasadena, CA 91125; Califo...