Carbon-hydrogen bond dissociation enthalpy (BDE) values are computed for the class of benzylic radicals. An extended and representative set of large methylated polyaromatics has been submitted to an accurate computational Study using various levels of theory. The hybrid B3P86 as well as two contemporary functionals (BMK and M05-2X) are applied. For a selection of species, the suitability of the DFT methods is validated through comparison with high-level G3(MP2)-RAD and SCS-ROMP2 results. The influence of the polyaromatic environment on the BDE results is thoroughly discussed. The results are compared with other hydrocarbon radical types in order to obtain a generalized radical stability scale. In order to complete this investigation, also c...
In this review, we have mainly focused on the recent computational studies on the bond dissociation ...
Detailed knowledge of hydrocarbon radical thermochemistry is critical for understanding diverse chem...
Abstract Knowledge of the energies required to induce homolytic cleavage of the C–Br bonds of bromin...
Carbon-hydrogen bond dissociation enthalpy (BDE) values are computed for the class of benzylic radic...
We present a validation of computationally efficient density functional-based methods for the reprod...
The effects have been studied of mono- and dibenzannulation of a benzyl radical with hybrid density ...
Supporting information for Hydrocarbon bond dissociation enthalpies: From substituted aromatics to l...
Bond dissociation energies (BDEs) and radical stabilization energies (RSEs) associated with a series...
The density functional theory (DFT) is the most popular method for evaluating bond dissociation enth...
The thermodynamic properties of the unsubstituted and substituted phenyl, phenoxy, anisyl, benzoyl, ...
In this study, the bond dissociation energy (BDE) values of X-H (X = C, N, O, S) bonds of aromatic c...
Density functional theory (DFT) and G3-type (G3(MP2)-RAD) composite calculations were performed on a...
In this study, the performance of 17 different density functional theory functionals was compared fo...
A number of σ localized aromatic radicals, biradicals, and triradicals were studied in the gas phase...
This article discusses and compares various methods for defining and measuring radical stability, in...
In this review, we have mainly focused on the recent computational studies on the bond dissociation ...
Detailed knowledge of hydrocarbon radical thermochemistry is critical for understanding diverse chem...
Abstract Knowledge of the energies required to induce homolytic cleavage of the C–Br bonds of bromin...
Carbon-hydrogen bond dissociation enthalpy (BDE) values are computed for the class of benzylic radic...
We present a validation of computationally efficient density functional-based methods for the reprod...
The effects have been studied of mono- and dibenzannulation of a benzyl radical with hybrid density ...
Supporting information for Hydrocarbon bond dissociation enthalpies: From substituted aromatics to l...
Bond dissociation energies (BDEs) and radical stabilization energies (RSEs) associated with a series...
The density functional theory (DFT) is the most popular method for evaluating bond dissociation enth...
The thermodynamic properties of the unsubstituted and substituted phenyl, phenoxy, anisyl, benzoyl, ...
In this study, the bond dissociation energy (BDE) values of X-H (X = C, N, O, S) bonds of aromatic c...
Density functional theory (DFT) and G3-type (G3(MP2)-RAD) composite calculations were performed on a...
In this study, the performance of 17 different density functional theory functionals was compared fo...
A number of σ localized aromatic radicals, biradicals, and triradicals were studied in the gas phase...
This article discusses and compares various methods for defining and measuring radical stability, in...
In this review, we have mainly focused on the recent computational studies on the bond dissociation ...
Detailed knowledge of hydrocarbon radical thermochemistry is critical for understanding diverse chem...
Abstract Knowledge of the energies required to induce homolytic cleavage of the C–Br bonds of bromin...