材料科学
佩多:嘘
静电纺丝
薄板电阻
纳米发生器
Kapton
氧化铟锡
纳米纤维
复合材料
基质(水族馆)
电极
导电体
柔性电子器件
摩擦电效应
电导率
光电子学
图层(电子)
聚合物
聚酰亚胺
压电
化学
物理化学
地质学
海洋学
作者
Xenofon Karagiorgis,Dhayalan Shakthivel,Gaurav Khandelwal,Rebecca E. Ginesi,Peter J. Skabara,Ravinder Dahiya
标识
DOI:10.1021/acsami.4c00682
摘要
Highly conductive, transparent, and easily available materials are needed in a wide range of devices, such as sensors, solar cells, and touch screens, as alternatives to expensive and unsustainable materials such as indium tin oxide. Herein, electrospinning was employed to develop fibers of PEDOT:PSS/silver nanowire (AgNW) composites on various substrates, including poly(caprolactone) (PCL), cotton fabric, and Kapton. The influence of AgNWs, as well as the applied voltage of electrospinning on the conductivity of fibers, was thoroughly investigated. The developed fibers showed a sheet resistance of 7 Ω/sq, a conductivity of 354 S/cm, and a transmittance value of 77%, providing excellent optoelectrical properties. Further, the effect of bending on the fibers' electrical properties was analyzed. The sheet resistance of fibers on the PCL substrate increased slightly from 7 to 8 Ω/sq, after 1000 bending cycles. Subsequently, as a proof of concept, the nanofibers were evaluated as electrode material in a triboelectric nanogenerator (TENG)-based energy harvester, and they were observed to enhance the performance of the TENG device (78.83 V and 7 μA output voltage and current, respectively), as compared to the same device using copper electrodes. These experiments highlight the untapped potential of conductive electrospun fibers for flexible and transparent electronics.
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