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采用新型溶液法可控生长取向良好的ZnO纳米棒阵列。

Controlled growth of well-aligned ZnO nanorod array using a novel solution method.

作者信息

Tak Youngjo, Yong Kijung

机构信息

Surface Chemistry Laboratory of Electronic Materials, Electrical Engineering and Computer Science Division, Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 790-784, Korea.

出版信息

J Phys Chem B. 2005 Oct 20;109(41):19263-9. doi: 10.1021/jp0538767.

Abstract

A simple method of synthesizing nanomaterials and the ability to control the size and position of them are crucial for fabricating nanodevices. In this work, we developed a novel ammonia aqueous solution method for growing well-aligned ZnO nanorod arrays on a silicon substrate. For ZnO nanorod growth, a thin zinc metal seed layer was deposited on a silicon substrate by thermal evaporation. Uniform ZnO nanorods were grown on the zinc-coated silicon substrate in aqueous solution containing zinc nitrate and ammonia water. The growth temperature was as low as 60-90 degrees C and a 4-in. wafer size scale up was possible. The morphology of a zinc metal seed layer, pH, growth temperature, and concentration of zinc salt in aqueous solution were important parameters to determine growth characteristics such as average diameters and lengths of ZnO nanorods. We could demonstrate the discrete controlled growth of ZnO nanorods using sequential, tailored growth steps. By combining our novel solution method and general photolithography, we selectively grew ZnO nanorod arrays on a patterned silicon substrate. Our concepts on controlled ZnO nanorod growth using a simple solution method would be applicable for various nanodevice fabrications.

摘要

一种合成纳米材料的简单方法以及控制其尺寸和位置的能力对于制造纳米器件至关重要。在这项工作中,我们开发了一种新颖的氨水溶液法,用于在硅衬底上生长排列良好的ZnO纳米棒阵列。对于ZnO纳米棒的生长,通过热蒸发在硅衬底上沉积一层薄的锌金属籽晶层。在含有硝酸锌和氨水的水溶液中,在涂有锌的硅衬底上生长出均匀的ZnO纳米棒。生长温度低至60 - 90摄氏度,并且可以扩大到4英寸晶圆尺寸。锌金属籽晶层的形貌、pH值、生长温度以及水溶液中锌盐的浓度是决定ZnO纳米棒平均直径和长度等生长特性的重要参数。我们可以通过连续的、定制的生长步骤来证明ZnO纳米棒的离散可控生长。通过将我们新颖的溶液法与普通光刻技术相结合,我们在图案化的硅衬底上选择性地生长了ZnO纳米棒阵列。我们关于使用简单溶液法控制ZnO纳米棒生长的概念将适用于各种纳米器件制造。

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