Model predictions of the dissociation energies of homonuclear and heteronuclear diatomic molecules of two transition metals
Andries Rinse Miedema
Abstract
Andries Rinse Miedema
Abstract
It is demonstrated that, by taking the solid metal at zero temperature as the references state, the enthalpy of formation of homonuclear diatomic molecules can be obtained as the surface energy of a piece of metal having the size of two atoms. It is suggested that the energy of larger homonuclear metal clusters can be derived similarly.The heat of formation of heteronuclear diatomic molecules, relative to the two pure metal dimers, is derived by means of a model description for the interaction energy which is very similar to that used for interfacial energies and alloy heats of solution in the condensed phase.
OpenAlex reports 65 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
It is demonstrated that, by taking the solid metal at zero temperature as the references state, the enthalpy of formation of homonuclear diatomic molecules can be obtained as the surface energy of a piece of metal having the size of two atoms. It is suggested that the energy of larger homonuclear metal clusters can be derived similarly.The heat of formation of heteronuclear diatomic molecules, relative to the two pure metal dimers, is derived by means of a model description for the interaction energy which is very similar to that used for interfacial energies and alloy heats of solution in the condensed phase.
Key concepts: Homonuclear molecule, Heteronuclear molecule, Diatomic molecule, Chemistry, Dissociation (chemistry), Molecule, Bond-dissociation energy, Enthalpy