The first-order molecular connectivity, 1chi(v), is determined for each C2n (fullerene) and used to predict the enthalpy of sublimation, DELTAH(sub), of each C2n solid. The prediction is based upon a linear regression fit of the enthalpies of vaporization of polycyclic aromatic hydrocarbons as a function of 1chi(v). For C60 and C70, the calculated (and experimental) values - in kcal/mol - are C60: 40.8 (40.5) and C70: 46.6 (45). The theory is also used to predict the van der Waals volume, V, of the fullerenes. It is evident that this simple approach works for DELTAH(sub) for C60 and C70, but it needs to be checked with experimental data for the larger fullerenes
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Texto completo: acesso restrito. p. 1-7We investigate the impact of hydroxyl groups on the propertie...
A straightforward procedure using density functional theory (M06 2X) coupled with a group-equivalent...
The saturated vapor pressure and the enthalpy of sublimation of (Formula presented) has been calcula...
We have used quantum chemistry computations, in conjunction with isodesmic-type reactions, to obtain...
The saturated vapor pressure and the enthalpy of sublimation of (Formula presented) has been calcula...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
From simple topological considerations on the molecular shapes, a new method for calculating the coe...
From simple topological considerations on the molecular shapes, a new method for calculating the coe...
By using simply the numbers of occurrences of different atom types as descriptors, a conceptually tr...
An approach of calculating thermodynamic properties of the high-temperature modification of C60 is e...
From simple topological considerations on the molecular shapes, a new method for calculating the co...
An approach of calculating thermodynamic properties of the high-temperature modification of C60 is e...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Texto completo: acesso restrito. p. 1-7We investigate the impact of hydroxyl groups on the propertie...
A straightforward procedure using density functional theory (M06 2X) coupled with a group-equivalent...
The saturated vapor pressure and the enthalpy of sublimation of (Formula presented) has been calcula...
We have used quantum chemistry computations, in conjunction with isodesmic-type reactions, to obtain...
The saturated vapor pressure and the enthalpy of sublimation of (Formula presented) has been calcula...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
From simple topological considerations on the molecular shapes, a new method for calculating the coe...
From simple topological considerations on the molecular shapes, a new method for calculating the coe...
By using simply the numbers of occurrences of different atom types as descriptors, a conceptually tr...
An approach of calculating thermodynamic properties of the high-temperature modification of C60 is e...
From simple topological considerations on the molecular shapes, a new method for calculating the co...
An approach of calculating thermodynamic properties of the high-temperature modification of C60 is e...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Using the correlative method of the unsymmetrized self-consistent field for strongly anharmonic crys...
Texto completo: acesso restrito. p. 1-7We investigate the impact of hydroxyl groups on the propertie...