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A NONLINEAR, MONOLITHIC STRUCTURAL-MATERIAL SYSTEM FOR VIBRATION ENERGY HARVESTING AND STORAGE

机译:用于振动能量收集和存储的非线性,完整的结构材料系统

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This research introduces an integrated vibration energy harvester and electrochemical energy storage device that can effectively convert ambient vibrations directly into stored electrochemical energy. The electrochemical energy storage device is an electrical double layer capacitor (EDLC) with an ionic redox transistor as its membrane separator. This 'smart' membrane separator directly rectifies the electrical energy generated by the transduction from the nonlinear energy harvester, creating an ionic polarization across the membrane separator for storage. This electrochemical gradient can be subsequently used for powering sensor electronics as required in various applications, including structural condition monitoring. The alternating voltage developed by the energy harvester (+/-5 V around 100 Hz) is connected to an aqueous supercapacitor fabricated from nanoflbrous carbon paper electrodes and a polypyrrole-based (PPy(DBS)) smart membrane separator. A potential below -400mV from the energy harvester applied to the supercapacitor turns the smart membrane separator 'ON' and results in a unidirectional ionic current of Li+ ions. As the potential developed by the harvester cycles above ~50 mV, the membrane separator switches 'OFF' and prevents the discharge of the rectified current. This leads to a continuous polarization of ions towards electrical fields relevant for powering electronics. This article is the first description and demonstration of an energy harvesting and storage system that can directly convert the electrical energy from a vibration energy harvester into electrochemical energy without the use of passive circuit components for power rectification.
机译:这项研究引入了集成的振动能量收集器和电化学能量存储设备,可以有效地将环境振动直接转换为存储的电化学能量。电化学储能装置是一个双电层电容器(EDLC),以离子氧化还原晶体管作为其膜分离器。这种“智能”膜分离器可直接整流非线性能量收集器的转换产生的电能,从而在整个膜分离器上产生离子极化,从而进行存储。该电化学梯度可随后用于各种应用(包括结构状态监控)中所需的传感器电子设备。能量收集器产生的交流电压(大约100 Hz时为+/- 5 V)连接到由纳米纤维碳纸电极和基于聚吡咯(PPy(DBS))的智能膜分离器制成的水性超级电容器。来自能量收集器的施加到超级电容器的电位低于-400mV,会使智能膜分离器“接通”,并产生Li +离子的单向离子电流。当收割机产生的电势在〜50 mV以上循环时,膜分离器会切换为“ OFF”并阻止整流电流的放电。这导致离子朝着与为电子设备供电相关的电场连续极化。本文是对能量收集和存储系统的首次描述和演示,该系统可以将振动能量收集器中的电能直接转换为电化学能量,而无需使用无源电路组件进行功率整流。

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