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Nanogenerators with Superwetting Surfaces for Harvesting Water/Liquid Energy

机译:具有用于收获水/液体能量的过度雨刷表面的纳米液

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Abstract Water covers about 70% of the earth's surface and contains tremendous energy that remains untapped. Despite success in harvesting hydrodynamic energy based on heavy‐weight and bulky electromagnetic generators, a great deal of water energies stored in the low‐frequency flow of water such as in the form of raindrops, river/ocean waves, and the tide, remain largely untapped. In spite of diversity in development strategies and working mechanisms, engineering efficient water energy harvesting devices, especially nanogenerators, requires the elegant control of interfacial properties of substrates for rapid liquid mass and momentum transfer and effective electron generation/transfer. In particular, inspired by various special wetting phenomena in nature, the design of superwetting surfaces offers a new dimension to fundamentally mediate the way the liquid, as well as the charge, interact with the substrate. Herein, the latest progress in the development of nanogenerators with three distinctive interface types—solid/liquid, solid/solid, and liquid/liquid interfaces—are summarized and their representative applications, challenges, and future perspectives are highlighted.
机译:摘要水占地约70%的地球表面,并包含巨大的能量,仍未开发。尽管在基于重型和庞大的电磁发生器采伐的流体动力学能量成功,但储存在低频水中的水能很大,诸如以雨滴,河流/海浪和潮汐的形式仍然很大程度上未开发。尽管有多样性的发展策略和工作机制,但工程有效的水能收集装置,尤其是纳米液,需要优雅控制基材的界面性能,以快速液体质量和动量转移和有效的电子产生/转移。特别地,通过本质上的各种特殊润湿现象的启发,超雨刷表面的设计提供了一种新的尺寸,从根本上介导液体以及充电与基材相互作用的方式。在此,总结了具有三种独特界面类型固体/液体,固体/固体和液体/液体接口的纳米液体的最新进展 - 总结了它们的代表性应用,挑战和未来的观点。

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