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Flexible Textile-Based Organic Transistors Using Graphene/Ag Nanoparticle Electrode

机译:使用石墨烯/银纳米粒子电极的基于纺织品的柔性有机晶体管

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摘要

Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearable electronic applications. In this study, we fabricated multifunctional textile composites by vacuum filtration and wet-transfer of graphene oxide films on a flexible polyethylene terephthalate (PET) textile in association with embedding Ag nanoparticles (AgNPs) to improve the electrical conductivity. A flexible organic transistor can be developed by direct transfer of a dielectric/semiconducting double layer on the graphene/AgNP textile composite, where the textile composite was used as both flexible substrate and conductive gate electrode. The thermal treatment of a textile-based transistor enhanced the electrical performance (mobility = 7.2 cm2·V−1·s−1, on/off current ratio = 4  ×  105, and threshold voltage = −1.1 V) due to the improvement of interfacial properties between the conductive textile electrode and the ion-gel dielectric layer. Furthermore, the textile transistors exhibited highly stable device performance under extended bending conditions (with a bending radius down to 3 mm and repeated tests over 1000 cycles). We believe that our simple methods for the fabrication of graphene/AgNP textile composite for use in textile-type transistors can potentially be applied to the development of flexible large-area electronic clothes.
机译:高度柔性和导电的多功能纺织品被期望用于可穿戴电子应用中。在这项研究中,我们通过真空过滤和氧化石墨烯薄膜在柔性聚对苯二甲酸乙二酯(PET)纺织品上的湿转移以及与嵌入Ag纳米粒子(AgNPs)的结合来制备多功能纺织品复合材料,以提高导电性。可以通过在石墨烯/ AgNP纺织复合材料上直接转移介电/半导体双层来开发柔性有机晶体管,其中该纺织复合材料既用作柔性基板又用作导电栅电极。纺织品基晶体管的热处理提高了电性能(迁移率= 7.2 cm 2 ·V -1 ·s -1 )。 / off电流比= 4×10 5 ,阈值电压= -1.1 V),这是因为导电纺织电极与离子凝胶介电层之间的界面性能得到了改善。此外,纺织晶体管在扩展的弯曲条件下(弯曲半径低至3 mm,并经过1000次循环重复测试)显示出高度稳定的器件性能。我们相信,我们用于制造用于纺织型晶体管的石墨烯/ AgNP纺织复合材料的简单方法可以潜在地应用于柔性大面积电子服装的开发。

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