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Rationally patterned electrode of direct-current triboelectric nanogenerators for ultrahigh effective surface charge density

机译:用于超高效表面电荷密度的直流摩擦纳米电极的合理图案化电极

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摘要

As a new-era of energy harvesting technology, the enhancement of triboelectric charge density of triboelectric nanogenerator (TENG) is always crucial for its large-scale application on Internet of Things (IoTs) and artificial intelligence (AI). Here, a microstructure-designed direct-current TENG (MDC-TENG) with rationally patterned electrode structure is presented to enhance its effective surface charge density by increasing the efficiency of contact electrification. Thus, the MDC-TENG achieves a record high charge density of ~5.4?mC?m -2 , which is over 2-fold the state-of-art of AC-TENGs and over 10-fold compared to previous DC-TENGs. The MDC-TENG realizes both the miniaturized device and high output performance. Meanwhile, its effective charge density can be further improved as the device size increases. Our work not only provides a miniaturization strategy of TENG for the application in IoTs and AI as energy supply or self-powered sensor, but also presents a paradigm shift for large-scale energy harvesting by TENGs.
机译:作为能源收集技术的新时代,摩擦电纳米液(滕)的摩擦电荷密度的增强对于其在物联网(物联网)和人工智能(AI)上的大规模应用至关重要。这里,提出了一种具有合理图案化电极结构的微结构设计的直流腾(MDC-TENG)以通过提高接触电气化的效率来提高其有效表面电荷密度。因此,MDC-Teng达到了〜5.4的高电荷密度〜5.4的高电荷密度,与之前的DC-Tengs相比,ac-tengs最先进的术语和10倍以上。 MDC-Teng意识到小型化装置和高输出性能。同时,随着器件尺寸的增加,其有效充电密度可以进一步提高。我们的工作不仅为Teng提供了一个小型化策略,在IOTS和AI中的应用程序作为能源供应或自动传感器,但也提出了腾冲的大规模能量收获的范式转变。

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