Capacitive Ionic Current Measurement in a Polymer-Electrolyte Transistor

M.C. Hollenbeck, K. Stevens, R. Brower, R. Ewing, H. Abdel-Aty-Zohdy
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Abstract

Organic transistors that use dissolved ions to conduct current are able to reproduce the current-voltage characteristics of semiconductor transistors. The polymer-electrolyte transistor (PET) consists of a three-source acid/base reaction system, where a polymer gel separates the three source electrolytes and allows for transistor activity in the movement of the ions through the gel. The ability to directly measure the ionic current in the polymer of a PET reaction system without interfering with the reaction is a difficult task. Understanding the interfacial properties of an electrode-polymer junction will allow for a non-invasive method of directly measuring the ionic currents of the PET. The complex dielectric properties of a polymer system are considered, as well as the effect of the polymer-electrode interface.
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聚合物-电解质晶体管电容式离子电流测量
利用溶解离子传导电流的有机晶体管能够再现半导体晶体管的电流-电压特性。聚合物电解质晶体管(PET)由三源酸/碱反应系统组成,其中聚合物凝胶将三源电解质分离,并允许离子通过凝胶运动的晶体管活性。在不干扰反应的情况下直接测量PET反应体系聚合物中的离子电流是一项困难的任务。了解电极-聚合物连接处的界面特性将使直接测量PET离子电流的非侵入性方法成为可能。考虑了聚合物体系的复杂介电特性,以及聚合物-电极界面的影响。
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