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“原位”硬掩模材料:一种用于制备垂直硅纳米柱和纳米线阵列的新方法。

"In situ" hard mask materials: a new methodology for creation of vertical silicon nanopillar and nanowire arrays.

机构信息

Materials research group, Department of Chemistry and Tyndall National Institute, University College Cork, Cork, Ireland.

出版信息

Nanoscale. 2012 Dec 21;4(24):7743-50. doi: 10.1039/c2nr32693k. Epub 2012 Nov 8.

Abstract

A novel, simple and in situ hard mask technology that can be used to develop high aspect ratio silicon nanopillar and nanowire features on a substrate surface is demonstrated. The technique combines a block copolymer inclusion method that generates nanodot arrays on substrate and an inductively coupled plasma (ICP) etch processing step to fabricate Si nanopillar and nanowire arrays. Iron oxide was found to be an excellent resistant mask over silicon under the selected etching conditions. Features of a very high aspect ratio can be created by this method. The nanopillars have uniform diameter and smooth sidewalls throughout their entire length. The diameter (15-27 nm) and length of the nanopillars can be tuned easily. Different spectroscopic and microscopic techniques were used to examine the morphology and size, surface composition and crystallinity of the resultant patterns. The methodology developed may have important technological applications and provide an inexpensive manufacturing route to nanodimensioned topographical patterns. The high aspect ratio of the features may have importance in the area of photonics and the photoluminescence properties are found to be similar to those of surface-oxidized silicon nanocrystals and porous silicon.

摘要

本文展示了一种新颖、简单的原位硬掩模技术,可在基底表面上开发具有高纵横比的硅纳米柱和纳米线结构。该技术结合了在基底上生成纳米点阵列的嵌段共聚物包含方法和感应耦合等离子体(ICP)刻蚀工艺步骤,以制造 Si 纳米柱和纳米线阵列。研究发现,在选定的蚀刻条件下,氧化铁是硅的优秀抗蚀掩模。通过这种方法可以创建具有非常高纵横比的特征。纳米柱在整个长度上具有均匀的直径和光滑的侧壁。纳米柱的直径(15-27nm)和长度可以轻松调节。使用不同的光谱和显微镜技术来检查所得图案的形态和尺寸、表面组成和结晶度。所开发的方法可能具有重要的技术应用,并为纳米尺寸的形貌图案提供了一种廉价的制造途径。该特征的高纵横比在光子学领域可能具有重要意义,并且发现其光致发光性质与表面氧化的硅纳米晶体和多孔硅相似。

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