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A self-improving triboelectric nanogenerator with improved charge density and increased charge accumulation speed

机译:具有改进的电荷密度和增加的电荷积累速度的自改进摩擦电纳米发电机

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Charge density is one of the most important parameters of triboelectric nanogenerators since it directly determines performance; unfortunately, it is largely restricted by the phenomenon of air breakdown. Here, we design a self-improving triboelectric nanogenerator with improved charge density. A maximum effective charge density of 490?μC m?2 is obtained, which is about two times higher than the highest reported charge density of a triboelectric nanogenerator that operates in an air environment. At the beginning of the working process, the charge accumulation speed is increased 5.8 times in comparison with a triboelectric nanogenerator that is incorporated into the self-improving device. The self-improving triboelectric nanogenerator overcomes the restriction of air breakdown and exhibits an increased effective charge density, which contributes to the improvement of the output performance, and the increase of charge accumulation speed will accelerate the increase of the output power at the start of operation.
机译:电荷密度是摩擦电纳米发电机最重要的参数之一,因为它直接决定性能。不幸的是,它很大程度上受到空气击穿现象的限制。在这里,我们设计了一种具有改进电荷密度的自改进摩擦电纳米发电机。获得的最大有效电荷密度为490?Cm?2,约为在空气环境中运行的摩擦纳米发电机的最高报告电荷密度的两倍。在工作过程的开始,与集成在自改进装置中的摩擦纳米发电机相比,电荷积累速度提高了5.8倍。自改进的摩擦电纳米发电机克服了空气击穿的限制,并表现出提高的有效电荷密度,这有助于提高输出性能,并且电荷积累速度的提高将加速运行开始时输出功率的增长。 。

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