On the implicit bond-dependency origins of bridge interactions
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Publication:645134
DOI10.1007/s10910-011-9815-6zbMath1303.92156OpenAlexW2105877853MaRDI QIDQ645134
Roman F. Nalewajski, Piotr Gurdek
Publication date: 8 November 2011
Published in: Journal of Mathematical Chemistry (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10910-011-9815-6
orbital communication theorybond orderschemical interactionsinformation-theoretic bond multiplicitiesdirect/indirect bondsinterference of molecular communicationsWiberg bond order
Related Items (10)
Information-theoretic multiplicities of chemical bond in Shull's model of \(H_2\) ⋮ An analysis of the torquoselectivity effect in a ring-opening reaction through Fermi-Dirac's entropy: revealing the origin of the stereoselectivity. ⋮ An approach to chemical hardness through Shannon's entropy ⋮ On the information obtained using Shannon's entropy through spin density ⋮ A close-up to the bond-breaking and bond-forming using information theory ⋮ 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 ⋮ Basis set dependence of molecular information channels and their entropic bond descriptors ⋮ On \textit{phase}-equilibria in molecules ⋮ Quantum information descriptors and communications in molecules
Cites Work
- On interference of orbital communications in molecular systems
- Through-space and through-bridge components of chemical bonds
- Chemical bonds from through-bridge orbital communications in prototype molecular systems
- Use of the bond-projected superposition principle in determining the conditional probabilities of orbital events in molecular fragments
- Use of non-additive information measures in exploring molecular electronic structure: Stockholder bonded atoms and role of kinetic energy in the chemical bond
- Many-orbital probabilities and their entropy/information descriptors in orbital communication theory of the chemical bond
- Additive and non-additive information channels in orbital communication theory of the chemical bond
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