Suppr超能文献

自动模式转换功能增强型的摩擦纳米发电机。

Automatic Mode Transition Enabled Robust Triboelectric Nanogenerators.

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332-0245, United States.

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences , Beijing 100083, China.

出版信息

ACS Nano. 2015 Dec 22;9(12):12334-43. doi: 10.1021/acsnano.5b05618. Epub 2015 Nov 9.

Abstract

Although the triboelectric nanogenerator (TENG) has been proven to be a renewable and effective route for ambient energy harvesting, its robustness remains a great challenge due to the requirement of surface friction for a decent output, especially for the in-plane sliding mode TENG. Here, we present a rationally designed TENG for achieving a high output performance without compromising the device robustness by, first, converting the in-plane sliding electrification into a contact separation working mode and, second, creating an automatic transition between a contact working state and a noncontact working state. The magnet-assisted automatic transition triboelectric nanogenerator (AT-TENG) was demonstrated to effectively harness various ambient rotational motions to generate electricity with greatly improved device robustness. At a wind speed of 6.5 m/s or a water flow rate of 5.5 L/min, the harvested energy was capable of lighting up 24 spot lights (0.6 W each) simultaneously and charging a capacitor to greater than 120 V in 60 s. Furthermore, due to the rational structural design and unique output characteristics, the AT-TENG was not only capable of harvesting energy from natural bicycling and car motion but also acting as a self-powered speedometer with ultrahigh accuracy. Given such features as structural simplicity, easy fabrication, low cost, wide applicability even in a harsh environment, and high output performance with superior device robustness, the AT-TENG renders an effective and practical approach for ambient mechanical energy harvesting as well as self-powered active sensing.

摘要

虽然摩擦纳米发电机(TENG)已被证明是一种可再生且有效的环境能量收集方法,但由于其输出需要表面摩擦,因此其坚固性仍然是一个巨大的挑战,尤其是对于平面滑动模式的 TENG。在这里,我们设计了一种合理的 TENG,通过首先将平面滑动起电转换为接触分离工作模式,其次创建接触工作状态和非接触工作状态之间的自动转换,在不影响设备坚固性的情况下实现高输出性能。磁辅助自动转换摩擦纳米发电机(AT-TENG)被证明可以有效地利用各种环境旋转运动来发电,同时大大提高了设备的坚固性。在风速为 6.5 m/s 或水流速度为 5.5 L/min 的情况下,收集的能量能够同时点亮 24 个点光源(每个 0.6 W),并在 60 s 内将电容器充电至 120 V 以上。此外,由于合理的结构设计和独特的输出特性,AT-TENG 不仅能够从自然骑行和汽车运动中收集能量,还能够作为具有超高精度的自供电速度计。由于具有结构简单、易于制造、成本低、适用范围广(即使在恶劣环境下)以及具有出色设备坚固性的高输出性能等特点,AT-TENG 为环境机械能收集以及自供电主动感测提供了一种有效且实用的方法。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验