International audienceWe analyze a model that accounts for the inherently large thermal lattice fluctuations associated with the weak van der Waals intermolecular bonding in crystalline organic semiconductors. In these materials the charge mobility generally exhibits a "metalliclike" power-law behavior, with no sign of thermally activated hopping characteristic of carrier self-localization, despite apparent mean free paths comparable to or lower than the intermolecular spacing. Our results show that such a puzzling transport regime can be understood from the simultaneous presence of band carriers and incoherent states that are dynamically localized by the thermal lattice disorder
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
International audienceA relation derived from the Kubo formula shows that optical conductivity measu...
International audienceCharge transport in crystalline organic semiconductors is intrinsically limite...
4 pages, 2 figures.-- PACS numbers: 72.20.Dp, 71.38.-k, 72.10.-d, 72.80.Le.-- PDF with supplementary...
We propose that the electron transport in crystalline organic semiconductors at room temperature (RT...
We explore the charge transport mechanism in organic semiconductors based on a model that accounts f...
International audienceBloch-Boltzmann transport theory fails to describe the carrier diffusion in cu...
International audienceThe charge mobility of molecular semiconductors is limited by the large fluctu...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...
The charge transport in organic materials, from molecular crystals to polymers, is determined by the...
Charge transport in organic semiconductors is notoriously extremely sensitive to the presence of di...
We investigate the transport properties of charge carrier disordered organic semiconductors with a f...
We demonstrate that the degree of charge delocalization has a strong impact on polarization energy a...
The theories developed since the fifties to describe charge transport in molecular crystals proved t...
We investigate the transport properties of charge carriers in disordered organic semiconductors usin...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
International audienceA relation derived from the Kubo formula shows that optical conductivity measu...
International audienceCharge transport in crystalline organic semiconductors is intrinsically limite...
4 pages, 2 figures.-- PACS numbers: 72.20.Dp, 71.38.-k, 72.10.-d, 72.80.Le.-- PDF with supplementary...
We propose that the electron transport in crystalline organic semiconductors at room temperature (RT...
We explore the charge transport mechanism in organic semiconductors based on a model that accounts f...
International audienceBloch-Boltzmann transport theory fails to describe the carrier diffusion in cu...
International audienceThe charge mobility of molecular semiconductors is limited by the large fluctu...
The impact of the energetic disorder and the charge localization on the conductivity, mobility and c...
The charge transport in organic materials, from molecular crystals to polymers, is determined by the...
Charge transport in organic semiconductors is notoriously extremely sensitive to the presence of di...
We investigate the transport properties of charge carrier disordered organic semiconductors with a f...
We demonstrate that the degree of charge delocalization has a strong impact on polarization energy a...
The theories developed since the fifties to describe charge transport in molecular crystals proved t...
We investigate the transport properties of charge carriers in disordered organic semiconductors usin...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
International audienceA relation derived from the Kubo formula shows that optical conductivity measu...
International audienceCharge transport in crystalline organic semiconductors is intrinsically limite...