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首页> 外文期刊>Materials Letters >An all-rubber-based woven nanogenerator with improved triboelectric effect for highly efficient energy harvesting
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An all-rubber-based woven nanogenerator with improved triboelectric effect for highly efficient energy harvesting

机译:基于全橡胶的编织纳米料,具有改进的摩擦效应,用于高效的能量收获

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摘要

The conventional 2D textile-based triboelectric nanogenerators (t-TENGs) integrated with clothes can harvest various types of biomechanical energy that occur in everyday life. However, the power outputs are still low due to the limited gap between the strips, resulting in insufficient triboelectric effect utilization. Hence, we report a fully flexible homogeneous integrated textile-based TENG (HTNG) fabricated with flat-panel vulcanizing process based on Ag-coated glass microspheres and PTFE powders in high-temperature silicone rubber matrix (Ag@rubber and PTFE@rubber). After triboelectric material selection and rational structural design, the HTNG has three relatively independent charge flow paths to realize hybrid triboelectric energy harvesting. By optimizing the internal contact-separation design of triboelectric layer, the maximum peak to peak open-circuit voltage, short-circuit current, and power density of 728 V, 16.6 mu A, and 1.77 W/m(2) are obtained under 1 M Omega load, respectively. Moreover, the ability to respond to different frequencies, resistances, and charge capacity of HTNG are investigated experimentally. It proves an efficient access to harvest mechanical energy from environment and human motion. (C) 2020 Elsevier B.V. All rights reserved.
机译:与衣服的常规2D纺织品的摩擦纳米电器(T-Tengs)可以收获日常生活中发生的各种类型的生物力学能量。然而,由于条带之间的间隙有限,电力输出仍然很低,导致摩擦电效应不足。因此,我们通过基于Ag涂层玻璃微球和高温硅橡胶基质(Ag @橡胶和PTFE橡胶的PTFE粉末的平板硫化过程,通过平板硫化工艺报告了基于平板硫化过程的完全灵活的均匀综合纺织品的繁成(HTNG)。在摩擦材料选择和合理的结构设计之后,HTNG具有三个相对独立的电荷流动路径,以实现混合摩擦电能收获。通过优化摩擦电层的内部接触分离设计,在1以下获得最大峰值为峰值开路电压,短路电流和功率密度为728 v,16.6μma和1.77 w / m(2) m omega载重。此外,实验研究了响应HTNG的不同频率,电阻和充电容量的能力。它证明有效地获得从环境和人类运动中收获机械能。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Materials Letters 》 |2021年第15期| 129271.1-129271.4| 共4页
  • 作者单位

    North Univ China Sch Instrument & Elect Sci & Technol Elect Test & Measurement Lab Taiyuan 030051 Peoples R China;

    Shanghai Inst Space Power Sources State Key Lab Space Power Technol Shanghai 200245 Peoples R China;

    North Univ China Sch Instrument & Elect Sci & Technol Elect Test & Measurement Lab Taiyuan 030051 Peoples R China;

    Shanghai Inst Space Power Sources State Key Lab Space Power Technol Shanghai 200245 Peoples R China;

    North Univ China Sch Instrument & Elect Sci & Technol Elect Test & Measurement Lab Taiyuan 030051 Peoples R China;

    Shanghai Inst Space Power Sources State Key Lab Space Power Technol Shanghai 200245 Peoples R China;

    North Univ China Sch Instrument & Elect Sci & Technol Elect Test & Measurement Lab Taiyuan 030051 Peoples R China;

    North Univ China Sch Instrument & Elect Sci & Technol Elect Test & Measurement Lab Taiyuan 030051 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy storage and conversion; Textile-based triboelectric nanogenerator; Homogeneous integration; Multilayer structure;

    机译:储能和转换;纺织品摩擦纳米料;均匀集成;多层结构;

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