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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Suppression of nanowire clustering in hybrid energy harvesters
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Suppression of nanowire clustering in hybrid energy harvesters

机译:抑制混合能量收集器中的纳米线聚集

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In energy harvesters using arrays of nanowires (NWs), a larger density of NWs should imply higher performance, but in reality the efficiency of the cells is always deteriorated due to NW collision. Impeding the formation of NW clusters in highly populated arrays is essential to ensure effective NW movement and provide a high surface area. Here we present a cost-effective methodology to avoid NW clustering in highly populated arrays of nanowires. First, a flexible polymer is intercalated between the NWs by spin coating, and then its height is tuned by controlled oxygen plasma etching. The resulting optimized energy harvesters show an enhancement in the piezoelectric effect by a factor of 80, as well as a notable improvement in the photoelectric response. The relationship between the height of the intercalated polymer and the piezo potential produced by the nanowires is simulated by the finite element method calculations, which support the experimental observations.
机译:在使用纳米线(NW)阵列的能量收集器中,较大的NW密度意味着更高的性能,但实际上,由于NW碰撞,电池的效率始终会降低。阻止在人口密集的阵列中形成NW簇对于确保有效的NW移动并提供高表面积至关重要。在这里,我们提出了一种经济高效的方法,可以避免在人口密集的纳米线阵列中出现NW聚类。首先,通过旋涂将柔性聚合物插入NW之间,然后通过受控的氧等离子体蚀刻来调整其高度。最终优化的能量收集器显示出压电效应提高了80倍,并且光电响应得到了显着改善。通过有限元方法计算来模拟插层聚合物的高度与纳米线产生的压电势之间的关系,这支持了实验观察。

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