In this work we study the electronic structure associated to a disordered distribution of bipolarons in polythiophene. The polymer chain is modelled by a tight-binding Hamiltonian with explicit treatment of electron-phonon coupling and the elastic energy of the sigma framework. The model also includes the electrostatic interaction due to the counterions. The density of states of the disordered system is obtained by the use of the Negative Factor Counting technique. Our results show that ion-induced conformational disorder can account for the closure of the gap and that the states around the Fermi level are extended. © 1993
Effects of thermal disorder on the electronic properties of ordered polymers Marko Mladenovićab and...
The shape and stability of polarons and bipolarons in oligothiophenes are studied systematically as ...
Nous étudions la structure électronique de polymères purs et dopés comme le polyheptadyine, le polyp...
In the present work, the electronic structure of polythiophene at several doping levels is investiga...
A modified Su-Schrieffer-Heeger Hamiltonian-based model is used to compute the electronic and geomet...
Electronic structure of disordered semiconducting conjugated polymers was studied. Atomic structure ...
In this work we report the electronic structure of polyazine derivatives, in the presence of conform...
Thermodynamical stability of all possible isomers of small oligomers of thiophene including branched...
We report a theoretical study on the effect of the presence of conformational defects (soliton type)...
To understand how disorder within conjugated polymer aggregates influences the polaron generation pr...
Symmetrized density-matrix-renormalization-group calculations have been carried out, within Pariser-...
We present a study of electron- shole-d phonon interaction and polaron formation in semiconducting p...
In this work, the role of structure disorder on the alkyl-substituted polythiophene electronic spect...
We study the effect of thermal disorder on the electronic structure of one-dimensional poly-para-phe...
A linear-scaling method, based on the definition of a localized molecular orbital set, for the calcu...
Effects of thermal disorder on the electronic properties of ordered polymers Marko Mladenovićab and...
The shape and stability of polarons and bipolarons in oligothiophenes are studied systematically as ...
Nous étudions la structure électronique de polymères purs et dopés comme le polyheptadyine, le polyp...
In the present work, the electronic structure of polythiophene at several doping levels is investiga...
A modified Su-Schrieffer-Heeger Hamiltonian-based model is used to compute the electronic and geomet...
Electronic structure of disordered semiconducting conjugated polymers was studied. Atomic structure ...
In this work we report the electronic structure of polyazine derivatives, in the presence of conform...
Thermodynamical stability of all possible isomers of small oligomers of thiophene including branched...
We report a theoretical study on the effect of the presence of conformational defects (soliton type)...
To understand how disorder within conjugated polymer aggregates influences the polaron generation pr...
Symmetrized density-matrix-renormalization-group calculations have been carried out, within Pariser-...
We present a study of electron- shole-d phonon interaction and polaron formation in semiconducting p...
In this work, the role of structure disorder on the alkyl-substituted polythiophene electronic spect...
We study the effect of thermal disorder on the electronic structure of one-dimensional poly-para-phe...
A linear-scaling method, based on the definition of a localized molecular orbital set, for the calcu...
Effects of thermal disorder on the electronic properties of ordered polymers Marko Mladenovićab and...
The shape and stability of polarons and bipolarons in oligothiophenes are studied systematically as ...
Nous étudions la structure électronique de polymères purs et dopés comme le polyheptadyine, le polyp...