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首页> 外文期刊>Nano Energy >On enhancing capability of tribocharge transfer of ZnO nanorod arrays by Sb doping for anomalous output performance improvement of triboelectric nanogenerators
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On enhancing capability of tribocharge transfer of ZnO nanorod arrays by Sb doping for anomalous output performance improvement of triboelectric nanogenerators

机译:用Sb掺杂提高ZnO Nanorod阵列摩擦力传递的能力,以对摩擦纳米料的异常输出性能改进

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Triboelectric nanogenerator (TENG) is an emerging green energy alternative, but the still low output power has been plagued by incomplete visualization into surface chemistry of materials. As an effective way of modifying surface chemistry for semiconductors by doping, we demonstrate that ZnO nanorod (NR) arrays doped into p-type with Sb can drastically enhance the output performance of TENG. The p-type characters of all the Sb-doped are confirmed and the hole carrier concentration is estimated to range from 2.83 x 10(15) to 1.87 x 10(18) cm(-3). Surprisingly, the output voltage and current of p-type ZnO NR arrays are remarkably enhanced from undoped n-type ZnO by 24 and 5.5 times, respectively, in giving up electrons to negatively charged PDMS. Contrarily, the triboelectric output performance of ZnO NR arrays is degraded by Sb doping when rubbing against positively charged nylon. The abnormal phenomena are ascribed to the formation of electron accumulation layers upon Sb doping through substitution of Zn+2 with Sb+3, resulting in surface downward band bending to render as n-type characteristics. This work has demonstrated a viable method to enable ZnO tunable in the relative position of the triboelectric series, in facilitation of designing high output power TENGs.
机译:摩擦电纳米能器(滕)是一种新兴的绿色能量替代方案,但仍然低输出功率通过对材料的表面化学化的不完全性能困扰。作为通过掺杂改变半导体表面化学的有效方法,我们证明掺杂到具有SB的p型中的ZnO纳米棒(NR)阵列可以大大提高滕的输出性能。确认所有SB掺杂的p型特征,并且孔载体浓度估计为2.83×10(15)至1.87×10(18)cm(-3)。令人惊讶的是,P型ZnO NR阵列的输出电压和电流分别从未掺杂的N型ZnO×24和5.5次显着增强,以放置给带负电的PDMS。相反,ZnO NR阵列的摩擦电输出性能在摩擦带正电荷的尼龙时通过Sb掺杂降低。通过用Sb + 3取代Zn + 2的Sb掺杂时,异常现象归因于电子累积层的形成,从而使表面向下带弯曲以使其成为n型特性。这项工作已经证明了一种可行的方法,可以在摩擦电系列的相对位置启用Zno调谐,以便于设计高输出功率腾冲。

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