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具有压电核壳纳米线的光伏。

Photovoltaics with piezoelectric core-shell nanowires.

机构信息

Division of Solid State Physics, Lund University, Lund, Sweden.

出版信息

Nano Lett. 2010 Apr 14;10(4):1108-12. doi: 10.1021/nl9040934.

Abstract

We report on a theoretical discovery of a generic piezoelectric field in strained core-shell compound semiconductor nanowires. We show, using both an analytical model and numerical simulations based on fully electroelastically coupled continuum elasticity theory, that lattice-mismatch-induced strain in an epitaxial core-shell nanowire gives rise to an internal electric field along the axis of the nanowire. This piezoelectric field results predominantly from atomic layer displacements along the nanowire axis within both the core and shell materials and can appear in both zinc blende and wurtzite crystalline core-shell nanowires. The effect can be employed to separate photon-generated electron-hole pairs in the core-shell nanowires and thus offers a new device concept for solar energy conversion.

摘要

我们报告了在应变核壳复合半导体纳米线中存在一种通用压电场的理论发现。我们使用基于完全电弹性耦合连续体弹性理论的解析模型和数值模拟,表明外延核壳纳米线中的晶格失配应变导致纳米线轴向上的内部电场。这个压电场主要来自于核心和壳材料中沿着纳米线轴的原子层位移,并且可以出现在闪锌矿和纤锌矿晶体核壳纳米线中。这种效应可以用于分离核壳纳米线中光生电子空穴对,从而为太阳能转换提供了一种新的器件概念。

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