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首页> 外文期刊>Organic Electronics >Bipolar charge transport in organic field-effect transistors: Enabling high mobilities and transport of photo-generated charge carriers by a molecular passivation layer
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Bipolar charge transport in organic field-effect transistors: Enabling high mobilities and transport of photo-generated charge carriers by a molecular passivation layer

机译:有机场效应晶体管中的双极性电荷传输:通过分子钝化层实现高迁移率和光生电荷载流子的传输

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High mobility bipolar charge carrier transport in organic field-effect transistors (OFETs) can be enabled by a molecular passivation layer and selective electrode materials. Using tetratetracontane as passivation layer bipolar transport was realised in the organic semiconductors copper-phthalocyanine, diindenoperylene, pentacene, TIPS-pentacene and sexithiophene and mobilities of up to 0.1 cm~2/V s were achieved for both electrons and holes. Furthermore, the trap and injection behaviour was analysed leading to a more general understanding of the transport levels of the used molecular semiconductors and their limitations for electron and hole transport in OFETs. With this knowledge the transistor operation can be further improved by applying two different electrode materials and a lightemitting transistor was demonstrated. Additionally, the effect of illumination on organic field-effect transistors was investigated for unipolar and bipolar devices. We find that the behaviour of photo-excited electrons and holes depends on the interface between the insulator and the semiconductor and the choice of contact materials. Whereas filling of electron traps by photo-generated charges and the related accumulation field are the reason for changes in charge carrier transport upon illumination without passivation layer, both types of charge carriers can be transported also in unipolar OFETs, if a passivation layer is present.
机译:分子钝化层和选择性电极材料可以实现有机场效应晶体管(OFET)中的高迁移率双极电荷载流子传输。使用四四烷作为钝化层,在有机半导体中实现了铜-酞菁,二茚并oper,并五苯,TIPS-并五苯和六噻吩的双极迁移,并且电子和空穴的迁移率均达到0.1 cm〜2 / V s。此外,分析了陷阱和注入行为,从而使人们对所用分子半导体的传输水平及其在OFET中对电子和空穴传输的局限性有了更全面的了解。有了这种知识,可以通过应用两种不同的电极材料进一步改善晶体管的工作,并证明了发光晶体管。此外,对于单极和双极器件,还研究了照明对有机场效应晶体管的影响。我们发现,光激发电子和空穴的行为取决于绝缘体和半导体之间的界面以及接触材料的选择。尽管没有钝化层,但光生电荷充填电子陷阱和相关的累积场是在不带钝化层的情况下照射时电荷载流子传输发生变化的原因,而如果存在钝化层,则两种类型的电荷载流子也可以在单极性OFET中传输。

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