Title :
Modeling of the thermoelectric properties of quasi-one-dimensional organic semiconductors
Author :
Casian, A. ; Balandin, A.A. ; Dusciac, V. ; Dusciac, R.
Abstract :
Electrical conductivity σ, Seebeck coefficient S, electronic thermal conductivity Ke and the thermoelectric figure of merit ZT are investigated theoretically in quasi-one-dimensional (Q1D) organic semiconductors that consist of linear conducting chains of molecules. Two main electron-phonon interaction mechanisms are considered simultaneously. It is shown that under certain conditions the interference between these interactions can occur. As a result, the relaxation time τ(E) as a function of carrier energy takes the form of a Lorentzian peak, which can be rather sharp. The increase of τ(E) leads to the increase of σ, and the strong dependence of τ(E) on E ensures, simultaneously, the growth of S, at relatively low values of thermal conductivity. Unusually high values of ZT are predicted in such Q1D organic semiconductors.
Keywords :
Seebeck effect; electrical conductivity; electron-phonon interactions; organic semiconductors; thermal conductivity; thermoelectricity; Lorentzian peak; Q1D organic semiconductors; Seebeck coefficient; ZT; electrical conductivity; electron-phonon interaction mechanisms; electronic thermal conductivity; quasi-one-dimensional organic semiconductors; relaxation time; thermoelectric figure of merit; thermoelectric properties; Conducting materials; Crystallization; Crystals; Organic semiconductors; Phonons; Quantum dots; Superlattices; Temperature; Thermal conductivity; Thermoelectricity;
Conference_Titel :
Thermoelectrics, 2002. Proceedings ICT '02. Twenty-First International Conference on
Print_ISBN :
0-7803-7683-8
DOI :
10.1109/ICT.2002.1190327