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一种用于制备氧化锌-氧化镁核壳纳米线的简单低温合成路线。

A simple low temperature synthesis route for ZnO-MgO core-shell nanowires.

作者信息

Plank N O V, Snaith H J, Ducati C, Bendall J S, Schmidt-Mende L, Welland M E

机构信息

Nanoscience Centre, Department of Engineering, The University of Cambridge, 11 J J Thomson Avenue, Cambridge CB3 0FF, UK.

出版信息

Nanotechnology. 2008 Nov 19;19(46):465603. doi: 10.1088/0957-4484/19/46/465603. Epub 2008 Oct 22.

Abstract

We report a hydrothermal synthesis method for MgO shell coatings directly onto the surface of ZnO nanowire arrays. The entire process can be carried out below 100 °C. The MgO shells are produced by the addition of 10 mM magnesium nitrate with 0.2 M sodium hydroxide in water, resulting in a shell thickness of up to 8 nm, verified by high resolution transmission electron microscopy. The viability of the MgO layer as a functional element of optoelectronic devices was tested on solid-state organic hole-transporter based dye-sensitized solar cells. Incorporation of the MgO shell into the solar cell resulted in substantive efficiency improvements of over 400% in comparison to the pristine ZnO nanowire based photovoltaics, indicating that electrons can efficiently tunnel through the 'insulating' MgO shell.

摘要

我们报告了一种直接在ZnO纳米线阵列表面进行MgO壳层包覆的水热合成方法。整个过程可在100°C以下进行。MgO壳层是通过在水中加入10 mM硝酸镁和0.2 M氢氧化钠生成的,高分辨率透射电子显微镜证实其壳层厚度可达8 nm。基于固态有机空穴传输体的染料敏化太阳能电池测试了MgO层作为光电器件功能元件的可行性。与原始的基于ZnO纳米线的光伏电池相比,将MgO壳层并入太阳能电池可使效率大幅提高400%以上,这表明电子可以有效地隧穿“绝缘”的MgO壳层。

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