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Nonlinear effect of carrier drift on the performance of an n-type ZnO nanowire nanogenerator by coupling piezoelectric effect and semiconduction

机译:载流子漂移对压电效应与半导体耦合对n型ZnO纳米线纳米发电机性能的非线性影响

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摘要

In piezoelectric semiconductors, electric fields drive carriers into motion/redistribution, and in turn the carrier motion/redistribution has an opposite effect on the electric field itself. Thus, carrier drift in a piezoelectric semiconducting structure is essentially nonlinear unless the induced fluctuation of carrier concentration is very small. In this paper, the nonlinear governing equation of carrier concentration was established by coupling both piezoelectric effect and semiconduction. A nonlinear carrier-drift effect on the performance of a ZnO nanogenerator was investigated in detail and it was elucidated that carrier motion/redistribution occurs in the ZnO nanowire (ZNW) cross section while there is no carrier motion in the axial direction. At the same time, we noted that the amplitude of boundary electric charge grows with increasing deformation, but the peaks of boundary electric charge do not appear at the cross-section endpoints. Thus, in order to effectively improve the performance of the ZNW nanogenerator, the effect of electrode configuration on the piezoelectric potential difference and output power was analyzed in detail. The electrode size for the optimal performance of a ZnO nanowire generator was proposed. This analysis that couples electromechanical fields and carrier concentration as a whole has some referential significance to piezotronics.
机译:在压电半导体中,电场驱动载流子运动/重新分布,进而载流子运动/重新分布对电场本身产生相反的影响。因此,除非引起的载流子浓度波动很小,否则压电半导体结构中的载流子漂移基本上是非线性的。通过耦合压电效应和半导体,建立了载流子浓度的非线性控制方程。详细研究了非线性载流子漂移对ZnO纳米发电机性能的影响,并阐明了在ZnO纳米线(ZNW)截面中发生载流子运动/重新分布,而轴向上没有载流子运动。同时,我们注意到边界电荷的幅度随着变形的增加而增加,但是边界电荷的峰值并未出现在横截面的端点处。因此,为了有效地改善ZNW纳米发电机的性能,详细分析了电极配置对压电电势差和输出功率的影响。提出了用于ZnO纳米线发生器最佳性能的电极尺寸。整体上将电磁场和载流子浓度耦合起来的这一分析对压电技术具有一定的参考意义。

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