材料科学
能量收集
可穿戴计算机
电容器
储能
可穿戴技术
纤维
结构完整性
电极
整流器(神经网络)
功率(物理)
电
数码产品
光电子学
电压
电气工程
计算机科学
复合材料
工程类
嵌入式系统
结构工程
循环神经网络
物理化学
物理
机器学习
化学
随机神经网络
量子力学
人工神经网络
作者
Jianliang Gong,Bingang Xu,Xiaoyang Guan,Yuejiao Chen,Shengyan Li,Jie Feng
出处
期刊:Nano Energy
[Elsevier]
日期:2019-01-27
卷期号:58: 365-374
被引量:73
标识
DOI:10.1016/j.nanoen.2019.01.056
摘要
Through full flexible realization of a new energy harvesting mode using only common fiber materials as active components by adopting a computerized knitting programme strategy, herein we developed a new kind of all-textile energy harvesters (A-TEHs) with a three-dimensional fabric structural integrity that can harvest and convert mechanical energy to electricity directly. The electric performance of obtained A-TEHs working at a single-electrode mode was extraordinary, which can generate a maximum power density of 1768.2 mW m−2 by 1200 N at a matched resistance load of 50 MΩ, and directly light up over 320 LEDs instantaneously by a single impact with an effective area of only 56.7 cm2. When A-TEH was used to charge a 200 µF commercial capacitor storage device with a bridge rectifier, its charging capacity increased with the triggering force, ranging from 6.7 mV s−1 at 100 N to 11.3 mV s−1 at 1400 N. Benefiting from the full structural integrity of fiber materials, A-TEHs, for the first time, truly realized the excellent textile properties that all wearable electronics try to achieve, including safety, lightweight, comfort, breathability, washability, and unique advantage of tailorability, leading to a kind of truly wearable energy harvesters with versatile product designability.
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