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The Photo-Hall Effect in High-Mobility Organic Semiconductors

机译:高迁移型有机半导体的光厅效应

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摘要

High-mobility crystalline organic semiconductors are important for applications in advanced organic electronics and photonics. Photogeneration and transport of mobile photocarriers in these materials, although very important, remain underexplored. The photo-Hall effect can be used to address the fundamental charge transport properties of these functional molecular materials, without the need for fabricating complex transistor devices or chemical doping. Here, a photo-Hall effect is demonstrated in organic semiconductors, using a benchmark molecular system rubrene as an experimental platform. It is shown that this technique can be used to directly measure the charge carrier mobility and photocarrier density, decouple the surface and bulk transport phenomena, and thus significantly deepen the understanding of the mechanism of photoconductivity in these high-performance molecular materials.
机译:高迁移率结晶有机半导体对于先进的有机电子和光子学的应用很重要。在这些材料中的移动光载体的光发射和运输,虽然非常重要,但仍然是欠缺的。光厅效果可用于解决这些功能分子材料的基本电荷传输性能,而无需制造复杂的晶体管器件或化学掺杂。这里,使用基准分子系统rubRene作为实验平台,在有机半导体中演示了光厅效果。结果表明,该技术可用于直接测量电荷载流子迁移率和光载体密度,使表面和散装传输现象分离,从而显着加深了这些高性能分子材料中光电导性机理的理解。

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