Sun Xianqiang, He Jianxin, Qiang Rong, Nan Nan, You Xiaolu, Zhou Yuman, Shao Weili, Liu Fan, Liu Rangtong
Henan Provincial Key Laboratory of Functional Textile Materials, Zhongyuan University of Technology, Zhengzhou 450007, China.
Collaborative Innovation Center of Textile and Garment Industry, Zhengzhou 450007, China.
Materials (Basel). 2019 Jan 16;12(2):273. doi: 10.3390/ma12020273.
One-dimensional, flexible yarn-shaped supercapacitors for woven cloth have the potential for use in different kinds of wearable devices. Nevertheless, the challenge that supercapacitors face is low energy density. In this paper, we present a low-cost and large-scale manufacturing method to construct a supercapacitor yarn with high power and high energy density. To construct the novel and flexible poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate)⁻polyacrylonitrile (PDEOT: PSS-PAN)/Ni cotton (PNF/NiC) capacitor yarn, an electrospinning technique was initially used to wrap the polyacrylonitrile (PAN) nanofibers around the core Ni-coated yarn. The PEDOT: PSS⁻PAN nanofiber composite electrode was created using in situ deposition and H₃PO₄/PVA was used as a gel electrolyte. This electrode material has a yarn/nanofiber/PEDOT: PSS nanoparticle hierarchical structure, providing a high specific area and enhanced pseudocapacitance. The electrode demonstrated a high volumetric capacitance of 26.88 F·cm (at 0.08 A·cm), an energy density of 9.56 mWh·cm, and a power density of 830 mW·cm. In addition, the PNF/NiC capacitor yarns are lightweight, highly flexible, resistant to bending fatigue, can be connected in series or parallel, and may be suitable for a variety of wearable electronic products.
用于织布的一维柔性纱线状超级电容器有潜力应用于各类可穿戴设备。然而,超级电容器面临的挑战是能量密度低。在本文中,我们提出了一种低成本、大规模制造方法,以构建具有高功率和高能量密度的超级电容器纱线。为构建新型柔性聚(3,4 - 乙撑二氧噻吩):聚(苯乙烯磺酸盐)-聚丙烯腈(PEDOT:PSS - PAN)/镍棉(PNF/NiC)电容器纱线,最初采用静电纺丝技术将聚丙烯腈(PAN)纳米纤维包裹在镍涂层芯纱周围。通过原位沉积制备PEDOT:PSS - PAN纳米纤维复合电极,并使用H₃PO₄/PVA作为凝胶电解质。这种电极材料具有纱线/纳米纤维/PEDOT:PSS纳米颗粒的分级结构,提供了高比表面积并增强了赝电容。该电极在0.08 A·cm时展现出26.88 F·cm的高体积电容、9.56 mWh·cm的能量密度以及830 mW·cm的功率密度。此外,PNF/NiC电容器纱线重量轻、高度灵活、抗弯曲疲劳,可串联或并联连接,可能适用于各种可穿戴电子产品。