A single-grain organic field-effect transistor (OFET) of pentacene with a 1μm channel length of top-contact electrodes is demonstrated in a wide range of temperatures from 300 down to 5.8K. No hysteresis behavior was observed in the transfer characteristics throughout the entire temperature range. The saturation mobility and on/off ratio are estimated at 1.11cm2∕Vs and 107 at 300K and 0.34cm2∕Vs and 105 at 5.8K, respectively. The nonmonotonic temperature dependence of the mobility indicates a bandlike transport at high temperatures. The electric-field dependence of the mobility in the single-grain OFET does not show a Poole-Frenkel-like behavior. This indicates that Poole-Frenkel-like behavior observed in conventional OFETs can be attributed to the disorder of molecules; single-grain OFET is free from such disorders.
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Minari et al. (2006) studied this question.
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