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基于 GaN 纳米线的纳米发电机中的能量收集效率:肖特基纳米接触的关键影响。

Energy harvesting efficiency in GaN nanowire-based nanogenerators: the critical influence of the Schottky nanocontact.

机构信息

Centre des Nanosciences et des Nanotechnologies, site-Marcoussis, Université Paris-Saclay, CNRS-C2N-UMR9001, Route de Nozay, 91460 Marcoussis, France.

Laboratoire de Génie Electrique de Paris, UMR CNRS-Supélec 8507, Universités Pierre et Marie Curie et Paris-Sud, 11 rue Joliot-Curie, 91192 Gif Sur Yvette, France.

出版信息

Nanoscale. 2017 Mar 30;9(13):4610-4619. doi: 10.1039/c7nr00647k.

Abstract

The performances of 1D-nanostructure based nanogenerators are governed by the ability of nanostructures to efficiently convert mechanical deformation into electrical energy, and by the efficiency with which this piezo-generated energy is harvested. In this paper, we highlight the crucial influence of the GaN nanowire-metal Schottky nanocontact on the energy harvesting efficiency. Three different metals, p-type doped diamond, PtSi and Pt/Ir, have been investigated. By using an atomic force microscope equipped with a Resiscope module, we demonstrate that the harvesting of piezo-generated energy is up to 2.4 times more efficient using a platinum-based Schottky nanocontact compared to a doped diamond-based nanocontact. In light of Schottky contact characteristics, we evidence that the conventional description of the Schottky diode cannot be applied. The contact is governed by its nanometer size. This specific behaviour induces notably a lowering of the Schottky barrier height, which gives rise to an enhanced conduction. We especially demonstrate that this effective thinning is directly correlated with the improvement of the energy harvesting efficiency, which is much pronounced for Pt-based Schottky diodes. These results constitute a building block to the overall improvement of NW-based nanogenerator devices.

摘要

基于 1D 纳米结构的纳米发电机的性能取决于纳米结构将机械变形高效转化为电能的能力,以及有效收集这种压电能量的效率。在本文中,我们强调了 GaN 纳米线-金属肖特基纳米接触对能量收集效率的关键影响。研究了三种不同的金属,p 型掺杂金刚石、PtSi 和 Pt/Ir。通过使用配备 Resiscope 模块的原子力显微镜,我们证明与基于掺杂金刚石的纳米接触相比,使用基于铂的肖特基纳米接触收集压电产生的能量的效率高达 2.4 倍。鉴于肖特基接触的特性,我们证明传统的肖特基二极管描述不能适用。接触由其纳米尺寸决定。这种特殊行为显著降低了肖特基势垒高度,从而导致传导增强。我们特别证明,这种有效的变薄与能量收集效率的提高直接相关,对于基于 Pt 的肖特基二极管,这种提高更为显著。这些结果是整体提高 NW 基纳米发电机器件性能的基础。

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