Karagiorgis Xenofon, Shakthivel Dhayalan, Khandelwal Gaurav, Ginesi Rebecca, Skabara Peter J, Dahiya Ravinder
James Watt School of Engineering, University of Glasgow, Glasgow G128QQ, U.K.
School of Chemistry, University of Glasgow, Glasgow G128QQ, U.K.
ACS Appl Mater Interfaces. 2024 Apr 17;16(15):19551-19562. doi: 10.1021/acsami.4c00682. Epub 2024 Apr 3.
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.
在诸如传感器、太阳能电池和触摸屏等广泛的设备中,需要高导电性、透明且易于获取的材料,以替代铟锡氧化物等昂贵且不可持续的材料。在此,采用静电纺丝法在包括聚己内酯(PCL)、棉织物和聚酰亚胺薄膜(Kapton)在内的各种基材上制备聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)/银纳米线(AgNW)复合材料纤维。深入研究了AgNWs以及静电纺丝施加电压对纤维导电性的影响。所制备的纤维表现出7Ω/sq的表面电阻、354S/cm的电导率和77%的透光率,具有优异的光电性能。此外,还分析了弯曲对纤维电学性能的影响。在PCL基材上的纤维经过1000次弯曲循环后,其表面电阻从7Ω/sq略微增加到8Ω/sq。随后,作为概念验证,将纳米纤维评估为基于摩擦纳米发电机(TENG)的能量收集器中的电极材料,与使用铜电极的同一装置相比,观察到它们提高了TENG装置的性能(输出电压和电流分别为78.83V和7μA)。这些实验突出了导电静电纺丝纤维在柔性和透明电子学方面尚未开发的潜力。