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Significance of the double-layer capacitor effect in polar rubbery dielectrics and exceptionally stable low-voltage high transconductance organic transistors

机译:双层电容器效应在极性橡胶电介质和异常稳定的低压高跨导有机晶体管中的意义

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摘要

Both high gain and transconductance at low operating voltages are essential for practical applications of organic field-effect transistors (OFETs). Here, we describe the significance of the double-layer capacitance effect in polar rubbery dielectrics, even when present in a very low ion concentration and conductivity. We observed that this effect can greatly enhance the OFET transconductance when driven at low voltages. Specifically, when the polar elastomer poly(vinylidene fluoride-co-hexafluoropropylene) (e-PVDF-HFP) was used as the dielectric layer, despite a thickness of several micrometers, we obtained a transconductance per channel width 30 times higher than that measured for the same organic semiconductors fabricated on a semicrystalline PVDF-HFP with a similar thickness. After a series of detailed experimental investigations, we attribute the above observation to the double-layer capacitance effect, even though the ionic conductivity is as low as 10–10 S/cm. Different from previously reported OFETs with double-layer capacitance effects, our devices showed unprecedented high bias-stress stability in air and even in water.
机译:在低工作电压下,高增益和跨导对于有机场效应晶体管(OFET)的实际应用都是必不可少的。在这里,我们描述了即使在离子浓度和电导率非常低的情况下,极性橡胶介电层中双层电容效应的重要性。我们观察到,在低电压下驱动时,这种效应可以大大增强OFET跨导。具体而言,当使用极性弹性体聚偏二氟乙烯-共-六氟丙烯(e-PVDF-HFP)作为介电层时,尽管厚度为几微米,但我们获得的每通道跨导比测量的高30倍。在具有相似厚度的半结晶PVDF-HFP上制造的相同有机半导体。经过一系列详细的实验研究,即使离子电导率低至10-10 S / cm,我们也将上述观察结果归因于双层电容效应。与先前报道的具有双层电容效应的OFET不同,我们的设备在空气中甚至在水中显示出前所未有的高偏应力稳定性。

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