Additive and non-additive information channels in orbital communication theory of the chemical bond
From MaRDI portal
Publication:848192
DOI10.1007/s10910-009-9596-3zbMath1309.92087OpenAlexW2106774146MaRDI QIDQ848192
Publication date: 2 March 2010
Published in: Journal of Mathematical Chemistry (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10910-009-9596-3
information theorychemical bond multiplicitiesorbital communication theoryadditive/non-additive subchannelsbond ionicity/covalencyentropy/information bond descriptorsWiberg bond index
Related Items (13)
Entropic representation in the theory of molecular electronic structure ⋮ Information-theoretic multiplicities of chemical bond in Shull's model of \(H_2\) ⋮ Through-space and through-bridge components of chemical bonds ⋮ Chemical bonds from through-bridge orbital communications in prototype molecular systems ⋮ Entropic bond descriptors from separated output-reduced communication channels in atomic orbital resolution ⋮ Use of the bond-projected superposition principle in determining the conditional probabilities of orbital events in molecular fragments ⋮ On phases and interference of local communications in molecules ⋮ Communications in molecules: local and multi-configuration channels and their entropic descriptors of bond multiplicity and composition ⋮ On the implicit bond-dependency origins of bridge interactions ⋮ Basis set dependence of molecular information channels and their entropic bond descriptors ⋮ Entropy/information descriptors of the chemical bond revisited ⋮ On interference of orbital communications in molecular systems ⋮ On \textit{phase}-equilibria in molecules
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Entropy/information bond indices of molecular fragments
- Internal and external eigenvalue problems of Hermitian operators and their use in electronic structure theory
- Entropic descriptors of the chemical bond in H2: Local resolution of stockholder atoms
- Entropic bond indices from molecular information channels in orbital resolution: ground-state systems
- Chemical bonds through probability scattering: Information channels for intermediate-orbital stages
- On molecular similarity in communication theory of the chemical bond
- Manifestations of Pauli exclusion principle in communication theory of the chemical bond
- Communication-theory perspective on valence-bond theory
- Science from Fisher Information
- On Information and Sufficiency
This page was built for publication: Additive and non-additive information channels in orbital communication theory of the chemical bond