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A comparative study on a flexible ZnO-based nano-generator using Schottky and p-n junction contact for energy harvesting applications

机译:一个灵活的ZnO-based比较研究发电机使用肖特基和pn结联系能源获取的应用程序

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摘要

Vibration based piezoelectric energy harvesting from unused ambient sources is an efficient approach for a battery-free, sustainable and green power source for self-powered electronics. This paper presents the performance enhancement of a p-n junction based flexible nano-generator (NG). A stable, non-hazardous spiro and zinc oxide (ZnO) p-n junction based NG is proposed. The device performance is compared with a Schottky contact based NG. The experimental study is carried out using the tip excitation method. Most importantly, the contact modification with spiro improves the performance of the device by five times, thereby yielding an open circuit voltage of 300 mV, a short-circuit current density of 220 A cm(-2) and a maximum power density up to 48 W cm(-2) at 0.5 N. Furthermore, performance enhancement is achieved by reducing the external screening and the internal impedance. The results are validated using an RC time constant value derived from the impedance analysis.
机译:基于振动的压电能量收集在未使用的环境是一种有效的来源方法battery-free,可持续的和绿色能源来源自供电的电子产品。摘要介绍了性能增强一个基于pn结的灵活的发电机(NG)。氧化(氧化锌)提出一种基于pn结的NG。设备性能比基于肖特基接触的NG。是使用的激励方法。最重要的是,联系修改斯皮罗,从而提高设备的性能5倍,从而产生一个开放的电路300 mV的电压,短路电流密度220 cm(2)和最大的力量W密度48厘米(2)为0.5 n .此外,性能增强是通过减少外部检查和内部阻抗。时间常数的值来自阻抗分析。

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