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Materials-Related Strategies for Highly Efficient Triboelectric Energy Generators

机译:高效摩擦能发电机的材料相关策略

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摘要

Since 2012, triboelectric energy harvesting technologies have received a substantial amount of attention as they constitute one of the most efficient ways of transforming vibrational and frictional energy into electrical energy, regardless of location and environmental conditions. One of the most significant advantages of this technology is in the suitability of a very wide range of materials that can be readily incorporated into devices. In order to achieve efficient energy harvesting performance, advances in materials science and nanotechnology have been applied to develop high-performance triboelectric energy harvesters, which have witnessed a tremendous growth in popularity. However, even though a large number of materials, including polymers, metals, inorganic and composite materials, have been separately studied for triboelectric energy harvesting applications, the key features of these different classes of materials have never been presented together or summarized, to provide valuable insight for future materials development in this field. Here, a comprehensive review of the up-to-date materials-driven progress of triboelectric energy harvesting devices is provided, with emphasis on the study of materials-related operating mechanisms and emergent materials design strategies for highly efficient triboelectric devices. The discussion includes several issues and challenges that need to be addressed for further improvement of triboelectric devices.
机译:自2012年以来,摩擦能量收集技术得到了大量关注,因为它们构成了将振动和摩擦能量转化为电能的最有效方法之一,无论位置和环境条件如何。该技术的最大优点之一是适用于可以容易地纳入设备中的非常广泛的材料。为了实现高效的能量采伐性能,材料科学和纳米技术的进步已被应用于开发高性能的摩擦能收割机,目睹了普及的巨大增长。然而,即使是大量材料,包括聚合物,金属,无机和复合材料,也已经分别研究了摩擦能量收集应用,这些不同类别材料的关键特征从未被呈现在一起或总结,以提供有价值的洞察未来材料在这一领域的发展。在此,提供了对摩擦电能量收集装置的最新材料驱动进展的全面审查,重点是对高效摩擦电装置的材料相关操作机制和紧急材料设计策略的研究。讨论包括需要解决的几个问题和挑战,以便进一步改进摩擦电设备。

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