2009Unpublished venueRequires access

Charge-based Mobility Modeling for Organic Semiconductors

T. K. Maiti, Chinmay Kumar Maiti

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Abstract

Charge transport in organic semiconductors is investigated and a theoretical description of small polaron dc conductivity model is presented. The approach is based on Frohlich Hamiltonian. The model is implemented in a device simulator to analyze the electrical characteristics of pentacene-based Organic Thin Film Transistors (OTFT).

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What this paper is about

Charge transport in organic semiconductors is investigated and a theoretical description of small polaron dc conductivity model is presented. The approach is based on Frohlich Hamiltonian. The model is implemented in a device simulator to analyze the electrical characteristics of pentacene-based Organic Thin Film Transistors (OTFT).

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Available abstract

Charge transport in organic semiconductors is investigated and a theoretical description of small polaron dc conductivity model is presented. The approach is based on Frohlich Hamiltonian. The model is implemented in a device simulator to analyze the electrical characteristics of pentacene-based Organic Thin Film Transistors (OTFT).

Key concepts: Pentacene, Organic semiconductor, Polaron, Semiconductor, Hamiltonian (control theory), Materials science, Charge (physics), Transistor

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