2023/11/09 by S. D. Baranovskiǐ, A. V. Nenashev, Baranovskii, S. D. +7
Physics and Astronomy · Engineering · #Semiconductor Quantum Structures and Devices #Thin-Film Transistor Technologies #Organic Electronics and Photovoltaics
paper · pdf · doi:10.48550/arxiv.2311.05406
An appropriately parameterized compact analytical equation (APAE) is suggested to account for charge carrier mobility in organic disordered semiconductors (ODSs). This equation correctly reproduces the effects of temperature T, carrier concentration n, and electric field F on the carrier mobility μ(T,F,n), as evidenced by comparison with analytical theories and Monte Carlo simulations. The set of material parameters responsible for charge transport is proven to be at varience to those used in the so-called extended Gaussian disorder model (EGDM) approach, which is widely exploited in commercially distributed device--simulation algorithms. While EGDM is only valid for cubic lattices with a specific choice of parameters, APAE describes charge transport in systems with spatial disorder in a wide range of parameters. APAE is user-friendly and, thus, suitable for incorporation into device-simulation algorithms.