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Effect of water in ambient air on hysteresis in pentacene field-effect transistors containing gate dielectrics coated with polymers with different functional groups

机译:环境空气中的水对并五苯场效应晶体管的磁滞的影响,该晶体管的栅极电介质涂有具有不同官能团的聚合物

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摘要

We investigated the effect of water in ambient air on the hysteresis phenomena of pentacene field-effect transistors with polymer/SiO_2 gate dielectrics. The polarity of the polymer surface was controlled by using three different polymers: poly(styrene), poly(4-hydroxy styrene), and poly(4-vinyl pyridine). Water diffusion into the interface between the pentacene and the gate dielectric was driven by the polarity of the polymer surface, resulting in considerable hysteresis and degradation of device performances. The observed hysteresis behaviors can be explained in terms of donor- and acceptor-like trap formation by water molecules that have diffused between the pentacene and the gate dielectric. The different effects of these traps on hysteresis depending on the functional groups at the polymer surface were also investigated.
机译:我们研究了环境空气中水对具有聚合物/ SiO_2栅极电介质的并五苯场效应晶体管的磁滞现象的影响。通过使用三种不同的聚合物来控制聚合物表面的极性:聚(苯乙烯),聚(4-羟基苯乙烯)和聚(4-乙烯基吡啶)。水扩散到并五苯与栅极电介质之间的界面是由聚合物表面的极性驱动的,导致相当大的滞后现象和器件性能的下降。观察到的磁滞行为可以用在并五苯与栅极电介质之间扩散的水分子形成的施主和受主类陷阱形成来解释。还研究了这些陷阱对滞后的不同影响,具体取决于聚合物表面的官能团。

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