Processes of electron transfer, charge and spin localization, and electron pair transfer have been studied on the basis of the Marcus model and with the help of accurate quantum chemical calculations. A vibrational model, based on the corrections to the Born-Oppenheimerapproximation, which applies in the case of a vanishing barrier in the Marcus model, has been proposed. Molecular polaron formation energy in anthracene crystals is estimated, using ab initio methods. The results are in agreement with the measured energy structure of polaron states. A quantum-mechanical model for the description of charge localization in crystals is proposed. \u27Sharp\u27 metal-insulator transition at a certain ratio between the site reorganization energy l ...
I study the motion of polarons as a function of temperature in the context of a molecular crystal mo...
We report microscopic calculations of free energies and entropies for intramolecular electron transf...
An attempt is made to treat molecular wires by quantum chemical methods. What is the electronic diff...
Thirty years after the discovery of high temperature (HT) superconductivity (SC), no by all accepted...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
A theoretical model is presented aimed to provide a detailed microscopic description of the electron...
This work is a series of reports on progress in the description of electron-electron and electron-la...
Reviews the developments in the field of polarons, starting with the basics and covering a number of...
The main objective of this thesis is to provide a deeper understanding of the charge transport pheno...
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
Marcus theory of electron transfer is the quintessential example of a successful theory in physical ...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...
Abstract. The O(oxygen)-M(metal)-O(oxygen) molecule is a basic unit of high-temperature super-conduc...
This textbook sets out to enable readers to understand fundamental aspects underlying quantum macros...
I study the motion of polarons as a function of temperature in the context of a molecular crystal mo...
We report microscopic calculations of free energies and entropies for intramolecular electron transf...
An attempt is made to treat molecular wires by quantum chemical methods. What is the electronic diff...
Thirty years after the discovery of high temperature (HT) superconductivity (SC), no by all accepted...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
A theoretical model is presented aimed to provide a detailed microscopic description of the electron...
This work is a series of reports on progress in the description of electron-electron and electron-la...
Reviews the developments in the field of polarons, starting with the basics and covering a number of...
The main objective of this thesis is to provide a deeper understanding of the charge transport pheno...
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
Marcus theory of electron transfer is the quintessential example of a successful theory in physical ...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...
Abstract. The O(oxygen)-M(metal)-O(oxygen) molecule is a basic unit of high-temperature super-conduc...
This textbook sets out to enable readers to understand fundamental aspects underlying quantum macros...
I study the motion of polarons as a function of temperature in the context of a molecular crystal mo...
We report microscopic calculations of free energies and entropies for intramolecular electron transf...
An attempt is made to treat molecular wires by quantum chemical methods. What is the electronic diff...