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采用多种电极材料的气溶胶喷射印刷p型和n型电解质门控晶体管:探索印刷电子学的实用途径。

Aerosol jet printed p- and n-type electrolyte-gated transistors with a variety of electrode materials: exploring practical routes to printed electronics.

作者信息

Hong Kihyon, Kim Se Hyun, Mahajan Ankit, Frisbie C Daniel

机构信息

Department of Chemical Engineering & Materials Science, University of Minnesota , 421 Washington Avenue SE, Minneapolis, Minnesota 55455, United States.

出版信息

ACS Appl Mater Interfaces. 2014 Nov 12;6(21):18704-11. doi: 10.1021/am504171u. Epub 2014 Nov 3.

Abstract

Printing electrically functional liquid inks is a promising approach for achieving low-cost, large-area, additive manufacturing of flexible electronic circuits. To print thin-film transistors, a basic building block of thin-film electronics, it is important to have several options for printable electrode materials that exhibit high conductivity, high stability, and low-cost. Here we report completely aerosol jet printed (AJP) p- and n-type electrolyte-gated transistors (EGTs) using a variety of different electrode materials including highly conductive metal nanoparticles (Ag), conducting polymers (polystyrenesulfonate doped poly(3,4-ethylendedioxythiophene, PEDOT:PSS), transparent conducting oxides (indium tin oxide), and carbon-based materials (reduced graphene oxide). Using these source-drain electrode materials and a PEDOT:PSS/ion gel gate stack, we demonstrated all-printed p- and n-type EGTs in combination with poly(3-hexythiophene) and ZnO semiconductors. All transistor components (including electrodes, semiconductors, and gate insulators) were printed by AJP. Both kinds of devices showed typical p- and n-type transistor characteristics, and exhibited both low-threshold voltages (<2 V) and high hole and electron mobilities. Our assessment suggests Ag electrodes may be the best option in terms of overall performance for both types of EGTs.

摘要

印刷具有电功能的液体油墨是实现低成本、大面积、柔性电子电路增材制造的一种很有前景的方法。对于印刷薄膜晶体管(薄膜电子学的基本构建块)而言,拥有多种可印刷电极材料的选择很重要,这些材料要具备高导电性、高稳定性且成本低。在此,我们报告了完全通过气溶胶喷射印刷(AJP)制备的p型和n型电解质栅极晶体管(EGT),使用了多种不同的电极材料,包括高导电性金属纳米颗粒(Ag)、导电聚合物(聚苯乙烯磺酸盐掺杂的聚(3,4-乙撑二氧噻吩),PEDOT:PSS)、透明导电氧化物(氧化铟锡)以及碳基材料(还原氧化石墨烯)。使用这些源极-漏极电极材料以及PEDOT:PSS/离子凝胶栅极堆叠结构,我们展示了与聚(3-己基噻吩)和ZnO半导体相结合的全印刷p型和n型EGT。所有晶体管组件(包括电极、半导体和栅极绝缘体)均通过AJP印刷。这两种器件均显示出典型的p型和n型晶体管特性,并且具有低阈值电压(<2 V)以及高空穴和电子迁移率。我们的评估表明,就两种类型EGT的整体性能而言,Ag电极可能是最佳选择。

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