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Piezoelectric performance enhancement of ZnO flexible nanogenerator by a CuO-ZnO p-n junction formation

机译:通过形成CuO-ZnO p-n结来增强ZnO柔性纳米发电机的压电性能

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摘要

The piezoelectric potential screening by large excess electrons in nominally undoped ZnO has limited the energy conversion efficiency of the ZnO nanogenerators (NGs). In this study, we report a simple and effective approach to enhance the piezoelectric output performance of the ZnO NGs by forming a CuO-ZnO heterostructure. By depositing a ZnO thin film on the pre-deposited CuO thin film, which forms a p-n junction, excess electrons in ZnO can be effectively reduced. Thus, the piezoelectric potential generated in ZnO by an applied force can be less affected. Using this approach, we obtained an output voltage up to ~7.5 V and a maximum current of 4.5 μA cm~(-2) measured under the forward connection, which is a 7-fold higher output voltage and an approximately one order of magnitude higher current density by comparison to the ZnO NGs without a CuO layer. Our results clearly demonstrate the effectiveness of a CuO-ZnO heterostructure for realizing high performance flexible energy harvesting devices.
机译:在标称未掺杂的ZnO中通过大量过量电子进行的压电电势筛选限制了ZnO纳米发电机(NGs)的能量转换效率。在这项研究中,我们报告了一种简单有效的方法,通过形成CuO-ZnO异质结构来增强ZnO NG的压电输出性能。通过在形成p-n结的预沉积CuO薄膜上沉积ZnO薄膜,可以有效地减少ZnO中的过量电子。因此,可以较少地影响在ZnO中通过施加的力产生的压电电势。使用这种方法,我们获得了高达〜7.5 V的输出电压和在正向连接下测得的最大电流4.5μAcm〜(-2),这是输出电压的7倍,大约高了一个数量级。电流密度与没有CuO层的ZnO NG相比。我们的结果清楚地证明了CuO-ZnO异质结构对于实现高性能柔性能量收集装置的有效性。

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