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High photoresponsivity of pentacene-based organic thin-film transistors with UV-treated PMMA dielectrics

机译:具有紫外线处理的PMMA电介质的并五苯有机薄膜晶体管的高光响应性

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摘要

A simple UV-treatment process for poly(methyl methacrylate) (PMMA) dielectric is proposed to enhance photoresponsivity of pentacene-based organic thin-film transistors. The UV treatment creates excess negatively charged sites on the PMMA dielectric, which makes the device exhibit a large photoinduced current and prolongs persistent conductance recovery. In order to describe time-dependent photoinduced current, double-time constant equations are proposed. Based on time-constant fittings, slow-varied responses are found to be influenced by the UV treatment. The rapid-varied response is independent of gate bias and UV treatment. A plausible model for spatial carrier distribution is discussed and proposed to describe this observed phenomenon.
机译:为了提高并五苯有机薄膜晶体管的光响应性,提出了一种用于聚甲基丙烯酸甲酯(PMMA)电介质的简单紫外线处理工艺。紫外线处理会在PMMA电介质上产生过多的负电荷位,这使该器件表现出大的光感应电流并延长了持久的电导恢复。为了描述随时间变化的光感应电流,提出了双时常数方程。基于时间常数拟合,发现慢变响应受紫外线处理的影响。快速变化的响应与栅极偏置和UV处理无关。讨论并提出了一个合理的空间载波分布模型来描述这种观察到的现象。

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