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用于可穿戴设备的基于纳米和微纤维的全织物摩擦纳米发电机

Nano- And Microfiber-Based Fully Fabric Triboelectric Nanogenerator For Wearable Devices.

作者信息

Bae Jong Hyuk, Oh Hyun Ju, Song Jinkyu, Kim Do Kun, Yeang Byeong Jin, Ko Jae Hoon, Kim Seong Hun, Lee Woosung, Lim Seung Ju

机构信息

Smart Textiles R&D Group, Korea Institute of Industrial Technology (KITECH), Ansan 31056, Korea.

Department of Organic and Nano Engineering, Hanyang University, Seoul 04763, Korea.

出版信息

Polymers (Basel). 2020 Mar 13;12(3):658. doi: 10.3390/polym12030658.

Abstract

The combination of the triboelectric effect and static electricity as a triboelectric nanogenerator (TENG) has been extensively studied. TENGs using nanofibers have advantages such as high surface roughness, porous structure, and ease of production by electrospinning; however, their shortcomings include high-cost, limited yield, and poor mechanical properties. Microfibers are produced on mass scale at low cost; they are solvent-free, their thickness can be easily controlled, and they have relatively better mechanical properties than nanofiber webs. Herein, a nano- and micro-fiber-based TENG (NMF-TENG) was fabricated using a nylon 6 nanofiber mat and melt blown nonwoven polypropylene (PP) as triboelectric layers. Hence, the advantages of nanofibers and microfibers are maintained and mutually complemented. The NMF-TENG was manufactured by electrospinning nylon 6 on the nonwoven PP, and then attaching Ni coated fabric electrodes on the top and bottom of the triboelectric layers. The morphology, porosity, pore size distribution, and fiber diameters of the triboelectric layers were investigated. The triboelectric output performances were confirmed by controlling the pressure area and basis weight of the nonwoven PP. This study proposes a low-cost fabrication process of NMF-TENGs with high air-permeability, durability, and productivity, which makes them applicable to a variety of wearable electronics.

摘要

作为摩擦纳米发电机(TENG)的摩擦电效应和静电的结合已得到广泛研究。使用纳米纤维的TENG具有诸如高表面粗糙度、多孔结构以及通过静电纺丝易于生产等优点;然而,它们的缺点包括成本高、产量有限以及机械性能差。微纤维以低成本大规模生产;它们无溶剂,其厚度易于控制,并且与纳米纤维网相比具有相对更好的机械性能。在此,使用尼龙6纳米纤维垫和熔喷非织造聚丙烯(PP)作为摩擦电层制造了一种基于纳米和微纤维的TENG(NMF-TENG)。因此,纳米纤维和微纤维的优点得以保持并相互补充。NMF-TENG是通过在非织造PP上静电纺丝尼龙6,然后在摩擦电层的顶部和底部附着镀镍织物电极来制造的。研究了摩擦电层的形态、孔隙率、孔径分布和纤维直径。通过控制非织造PP的压力面积和定量来确认摩擦电输出性能。本研究提出了一种具有高透气性、耐用性和生产率的NMF-TENG的低成本制造工艺,这使得它们适用于各种可穿戴电子产品。

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