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Apparent dependence of conductivity of a conducting polymer on an electric field in a field effect transistor configuration

机译:场效应晶体管配置中导电聚合物的电导率对电场的明显依赖性

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摘要

A curious effect is reported whereby an electric field apparently greatly affects the conductivity of an organic polymer, poly-3,4-ethylenedioxythiophene (PEDOT), doped to the "metallic" conducting regime when it is used in an all-organic polymer field effect transistor configuration. The response time for change in current in the source/drain PEDOT polymer with a change of gate voltage is slow (less than or equal tosimilar to2 s), suggesting that ionic diffusion is involved in the phenomenon. It is suggested that the electric field changes only the conductivity of the lowly conducting polymer matrix, which contains highly conducting islands of PEDOT, thus changing the extent of percolation of electric charge between metallic islands, and thereby affecting the bulk conductivity of the PEDOT source/drain material. (C) 2002 American Institute of Physics. References: 22
机译:报道了一种奇怪的效应,即电场显然极大地影响了有机聚合物聚-3,4-乙烯二氧噻吩(PEDOT)的电导率,当它用于全有机聚合物场效应晶体管配置时,掺杂到“金属”导电状态。随着栅极电压的变化,源极/漏极PEDOT聚合物中电流变化的响应时间很慢(小于或等于2 s),表明该现象涉及离子扩散。该研究表明,电场仅改变含有PEDOT高导电岛的低导电聚合物基体的电导率,从而改变了金属岛之间电荷的渗透程度,从而影响了PEDOT源漏材料的体电导率。(C) 2002年美国物理研究所。[参考资料: 22]

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