We have carried out an extensive quantum chemical exploration of gas-phase alkali metal cation affinities (AMCAs) of archetypal neutral bases across the periodic system using relativistic density functional theory. One objective of this work is to provide an intrinsically consistent set of values of the 298 K AMCAs of all neutral maingroup-element hydrides XHn of groups 15-18 along the periods 1-6. Our main purpose is to understand these trends in terms of the underlying bonding mechanism using Kohn-Sham molecular orbital theory together with a canonical energy decomposition analysis (EDA). We compare the trends in XHn AMCAs with the trends in XHn proton affinities (PAs). We also examine the differences between the trends in AMCAs of the ne...
We have conducted an extensive computational exploration of how the gas-phase tert-butyl cation affi...
We have performed a systematic ab initio study on alkali and alkaline earth hydroxide neutral (MOH) ...
As part of an extended fundamental study on the interaction of molecular hydrogen with the surfaces ...
We have carried out an extensive exploration of gas-phase alkali metal cation affinities (AMCA) of a...
We discuss the concept of cation affinities (CA) and provide an overview of topical trends throughou...
We have computed the methyl cation affinities in the gas phase of archetypal anionic and neutral bas...
We have analyzed the structure and bonding of gas-phase Cl X and [HCl X](+) complexes for X+ = H+, C...
We have carried out an extensive exploration of gas-phase alkyl cation affinities (ACA) of archetypa...
Contains fulltext : 177955.pdf (publisher's version ) (Closed access
We have quantum chemically studied the structure and nature of alkali- and coinage-metal bonds (M-bo...
We have made an extensive theoretical exploration of gas-phase <i>N</i>-alkylamino cation affinities...
We have carried out an extensive exploration of the gas-phase basicity of archetypal neutral bases a...
Open Research Fund of State Key Laboratory of Physical Chemistry of Solid Surfaces, Xiamen Universit...
We have carried out an extensive exploration of the gas-phase basicity of archetypal anionic bases a...
Molecular properties, equilibrium bond lengths, dissociation energies, and vibrational frequencies o...
We have conducted an extensive computational exploration of how the gas-phase tert-butyl cation affi...
We have performed a systematic ab initio study on alkali and alkaline earth hydroxide neutral (MOH) ...
As part of an extended fundamental study on the interaction of molecular hydrogen with the surfaces ...
We have carried out an extensive exploration of gas-phase alkali metal cation affinities (AMCA) of a...
We discuss the concept of cation affinities (CA) and provide an overview of topical trends throughou...
We have computed the methyl cation affinities in the gas phase of archetypal anionic and neutral bas...
We have analyzed the structure and bonding of gas-phase Cl X and [HCl X](+) complexes for X+ = H+, C...
We have carried out an extensive exploration of gas-phase alkyl cation affinities (ACA) of archetypa...
Contains fulltext : 177955.pdf (publisher's version ) (Closed access
We have quantum chemically studied the structure and nature of alkali- and coinage-metal bonds (M-bo...
We have made an extensive theoretical exploration of gas-phase <i>N</i>-alkylamino cation affinities...
We have carried out an extensive exploration of the gas-phase basicity of archetypal neutral bases a...
Open Research Fund of State Key Laboratory of Physical Chemistry of Solid Surfaces, Xiamen Universit...
We have carried out an extensive exploration of the gas-phase basicity of archetypal anionic bases a...
Molecular properties, equilibrium bond lengths, dissociation energies, and vibrational frequencies o...
We have conducted an extensive computational exploration of how the gas-phase tert-butyl cation affi...
We have performed a systematic ab initio study on alkali and alkaline earth hydroxide neutral (MOH) ...
As part of an extended fundamental study on the interaction of molecular hydrogen with the surfaces ...