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Structure Design and Performance of Hybridized Nanogenerators
Advanced Functional Materials ( IF 18.5 ) Pub Date : 2018-12-10 , DOI: 10.1002/adfm.201806435
Kewei Zhang 1, 2 , Yuanhao Wang 3 , Ya Yang 1, 2
Affiliation  

Intelligent energy generation from ambient environment by various nanogenerators is desirable to realize self‐powered operation of electronics. By integrating two or more kinds of nanogenerators, a hybridized nanogenerator provides a possible solution to largely increase the total electric power, and thus has been considered as one of the most significant energy‐related technologies. Here, emerging advancements in hybridized nanogenerators are summarized in terms of their structures, principles, and potential applications. In particular, one‐structure‐based coupled nanogenerators based on multifunctional energy‐scavenging materials and the interface regulation of solar cells by inner nanogenerators are discussed. For potential applications in wearable electronics, the new progress on flexible hybridized nanogenerators is presented on the basis of stretchable and mechanically durable materials, substrates, and electrodes. With the advances highlighted here and the ongoing research efforts, the continuous breakthrough in hybridized nanogenerators for multiple energy scavenging and their extensive applications is foreseeable in the future.

中文翻译:

混合纳米发电机的结构设计与性能

为了实现电子设备的自供电运行,需要各种纳米发电机从周围环境中智能发电。通过集成两种或多种纳米发电机,混合纳米发电机提供了一种可能的解决方案,可大大增加总电力,因此被认为是最重要的能源相关技术之一。在这里,从杂交纳米发电机的结构,原理和潜在应用方面总结了新兴的进步。尤其讨论了基于多功能能量清除材料的单结构耦合纳米发电机,以及内部纳米发电机对太阳能电池的界面调节。对于可穿戴电子产品的潜在应用,柔性杂交纳米发电机的新进展是在可拉伸且机械耐用的材料,基底和电极的基础上提出的。随着这里突出的进展和正在进行的研究工作,可以预见的是,用于多种能量清除的混合纳米发电机的不断突破及其在未来的广泛应用。
更新日期:2018-12-10
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