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首页> 外文期刊>Nano Energy >Managing and maximizing the output power of a triboelectric nanogenerator by controlled tip–electrode air-discharging and application for UV sensing
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Managing and maximizing the output power of a triboelectric nanogenerator by controlled tip–electrode air-discharging and application for UV sensing

机译:控制尖端电极空气放电和紫外线施加的管理和最大化摩擦纳米料的输出功率

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摘要

AbstractUsing a switch has been verified as a promising strategy for managing and enhancing the output performances of a triboelectric nanogenerator (TENG). How to design a switch without external triggering is still a challenge. Here, a self-powered air discharge switch with a tip-plate configuration is developed, in which the switch's on/off state is controlled by the voltage of the TENG itself. The electric output of the TENG can be enhanced and modulated by changing the tip-plate distance of the switch. Compared with the same TENG without a switch, the instantaneous power peak and the total output energy on a load resistance lower than 2MΩ are increased by 1600 times and 31 times, respectively, as the switch works in an arc discharge mode. It is found that the UV light can change the switch from an arc discharge mode to a corona discharge mode, which increases the equivalent resistance of the switch and decreases the output current of the TENG. The current ratio of this UV detector reaches 18.6, and the lowest detectable light intensity is 26.2 μW/cm2. Using air discharge switch is a promising route for managing TENG's output power and developing active self-powered UV sensor.Graphical abstractAn air discharge switch has been introduced into the triboelectric nanogenerator (TENG), where the switch's on/off state is controlled by the
机译:<![cdata [ 抽象 使用交换机被验证为管理和增强摩擦电纳米液(Teng)的输出性能的有希望的策略。如何在没有外部触发的情况下设计开关仍然是一个挑战。这里,开发了具有尖端板配置的自动空气排放开关,其中开关的开/关状态由Teng本身的电压控制。通过改变开关的尖端距离,可以增强和调制Teng的电输出。与没有开关的相同Teng相比,随着开关在电弧放电模式下工作,瞬时功率峰值低于2MΩ的负载电阻上的总功率峰值和总输出能量分别增加了1600倍和31倍。发现UV光可以将开关从电弧放电模式改变为电晕放电模式,这增加了开关的等效电阻并降低了腾腾的输出电流。该UV检测器的电流比率达到18.6,并且最低可检测光强度为26.2μW/ cm 2 。使用空气排放交换机是管理腾腾的输出功率和开发有源自动紫外线传感器的有希望的路线。 图形抽象 已经将空气放电开关引入摩擦纳米料(Teng),其中开关的开/关状态由其控制

著录项

  • 来源
    《Nano Energy》 |2018年第2018期|共9页
  • 作者单位

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    School of Materials Science and Engineering Georgia Institute of Technology;

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    Key Lab for Special Functional Materials Ministry of Education Henan University;

    School of Materials Science and Engineering Georgia Institute of Technology;

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

    Triboelectric nanogenerator; Air discharge; Power management; Self-powered sensors;

    机译:摩擦电纳米料;空气放电;电源管理;自动传感器;

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