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首页> 外文期刊>Nano Energy >Nest-inspired nanosponge-Cu woven mesh hybrid for ultrastable and high-power triboelectric nanogenerator
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Nest-inspired nanosponge-Cu woven mesh hybrid for ultrastable and high-power triboelectric nanogenerator

机译:嵌套的纳米型型号-CU编织网杂交网杂交杂交型混合型纤维电纳米料

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摘要

Triboelectric nanogenerators (TENGs) are known as one of the most effective technologies to harvest electricity from mechanical kinetic energy. However, the structural durability and electrical output stability of TENGs have been considered as important aspects for their practical application in harsh working environments. Inspired by a bird nest's structure, we develop, for the first time, a hierarchically porous dielectric-electrode hybrid as functional tribo-electrification component for a TENG. The dielectric-electrode hybrid, composed of nanosponge poly (methyl methacrylate) supported by copper woven mesh (NP@Cu-mesh) is simply fabricated by a scalable one-step solution process and demonstrates several promising features including light weight, good flexibility, large surface area coupled with high mechanical robustness, as well as excellent humidity resistance and anticorrosion multifunctionality. The TENG device assembled with NP@Cu-mesh hybrid possesses a superior instantaneous power density of 13.9;W;m(-2) with output voltage of 560;V and current density of 5.6;mu A;cm(-2), even when only a small compressive force of similar to 8;N is applied. Moreover, the developed TENG device demonstrates exceptional structural durability and electrical output stability for over 25,000 cycles of contact-separation; furthermore, the device retains its high output performance in a wide range of humidity ambient or after being exposed to saline solution for several days. This work provides a newly and industrially compatible approach to produce a nature-inspired flexible TENG device with improved triboelectric output, long-term durability, and power generation reliability for various practical applications.
机译:摩擦电纳米液(Tengs)被称为从机械动能收获电力最有效的技术之一。然而,Tengs的结构耐久性和电输出稳定性被认为是他们在恶劣的工作环境中的实际应用的重要方面。灵感来自鸟巢的结构,我们首次开发分层多孔电介质电极杂交电极混合动力作为腾腾的功能性摩擦电气化组件。由铜编织网(NP @ Cu-Mesh)支撑的纳米孢子聚(甲基丙烯酸甲基丙烯酸甲酯)组成的介电电极杂交物简单地通过可扩展的一步溶液工艺制造,并证明了几种有前途的特征,包括轻质,良好的柔韧性,大表面积与高机械稳健性,以及出色的湿度耐湿度和防腐多功能性。用NP @ Cu-Mesh杂交机组装的滕装置具有优异的瞬时功率密度为13.9;宽; M(-2),输出电压为560; V和电流密度为5.6; mu a; cm(-2),甚至当仅应用类似于8的小压迫力时。此外,开发的腾腾装置展示了出色的结构耐久性和电输出稳定性,用于超过25,000个接触分离循环;此外,该装置在宽范围的湿度环境中或在暴露于盐水溶液几天后保持其高输出性能。这项工作提供了一种新的工业兼容的方法,可以生产自然启发灵活的腾设备,改善了各种实际应用的摩擦力输出,长期耐久性和发电可靠性。

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  • 来源
    《Nano Energy 》 |2020年第2020期| 共9页
  • 作者单位

    Korea Adv Inst Sci &

    Technol KAIST Dept Mech Engn Creat Res Initiat Ctr Funct Antagonist Nanoengn 291 Daehak Ro Daejeon 34141 South Korea;

    Korea Adv Inst Sci &

    Technol KAIST Dept Mech Engn Creat Res Initiat Ctr Funct Antagonist Nanoengn 291 Daehak Ro Daejeon 34141 South Korea;

    Korea Adv Inst Sci &

    Technol KAIST Dept Mech Engn Creat Res Initiat Ctr Funct Antagonist Nanoengn 291 Daehak Ro Daejeon 34141 South Korea;

    Korea Adv Inst Sci &

    Technol KAIST Dept Mech Engn Creat Res Initiat Ctr Funct Antagonist Nanoengn 291 Daehak Ro Daejeon 34141 South Korea;

    Ho Chi Minh City Univ Technol VNU HCM Fac Mat Technol Ho Chi Minh City 10288 Vietnam;

    Korea Adv Inst Sci &

    Technol KAIST Dept Mech Engn Creat Res Initiat Ctr Funct Antagonist Nanoengn 291 Daehak Ro Daejeon 34141 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程 ;
  • 关键词

    Nest-inspired; Triboelectric nanogenerator; Nanosponge; Harsh environment; Humidity resistance;

    机译:嵌套;摩擦纳米料;纳米泊;苛刻的环境;湿度阻力;

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