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新型合成方法控制氧化锌纳米线在氧化硅衬底上的取向。

Novel synthetic methodology for controlling the orientation of zinc oxide nanowires grown on silicon oxide substrates.

机构信息

Department of Electrical and Computer Engineering, Fitzpatrick Institute for Photonics, Duke University, Durham, North Carolina 27708, USA.

出版信息

Nanoscale. 2014 Apr 7;6(7):3861-7. doi: 10.1039/c3nr03694d.

Abstract

This study presents a simple method to reproducibly obtain well-aligned vertical ZnO nanowire arrays on silicon oxide (SiOx) substrates using seed crystals made from a mixture of ammonium hydroxide (NH4OH) and zinc acetate (Zn(O2CCH3)2) solution. In comparison, high levels of OH(-) concentration obtained using NaOH or KOH solutions lead to incorporation of Na or K atoms into the seed crystals, destroying the c-axis alignment of the seeds and resulting in the growth of misaligned nanowires. The use of NH4OH eliminates the metallic impurities and ensures aligned nanowire growth in a wide range of OH(-) concentrations in the seed solution. The difference of crystalline orientations between NH4OH- and NaOH-based seeds is directly observed by lattice-resolved images and electron diffraction patterns using a transmission electron microscope (TEM). This study obviously suggests that metallic impurities incorporated into the ZnO nanocrystal seeds are one of the factors that generates the misaligned ZnO nanowires. This method also enables the use of silicon oxide substrates for the growth of vertically aligned nanowires, making ZnO nanostructures compatible with widely used silicon fabrication technology.

摘要

本研究提出了一种简单的方法,使用由氨水 (NH4OH) 和醋酸锌 (Zn(O2CCH3)2) 溶液混合物制成的晶种,在氧化硅 (SiOx) 衬底上可重复地获得垂直排列良好的 ZnO 纳米线阵列。相比之下,使用 NaOH 或 KOH 溶液获得的高浓度 OH(-) 会导致 Na 或 K 原子掺入晶种中,破坏晶种的 c 轴取向,导致纳米线排列不齐。使用 NH4OH 可以消除金属杂质,并确保在晶种溶液中具有较宽范围的 OH(-)浓度下,纳米线能够整齐排列地生长。通过使用透射电子显微镜 (TEM) 进行晶格分辨成像和电子衍射图案,可以直接观察到 NH4OH-和 NaOH 基晶种之间的晶体取向差异。本研究清楚地表明,掺入 ZnO 纳米晶种中的金属杂质是导致 ZnO 纳米线排列不齐的因素之一。该方法还可以使氧化硅衬底用于垂直排列纳米线的生长,从而使 ZnO 纳米结构与广泛使用的硅制造技术兼容。

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