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通过化学氧化法从 Si 柱模板制备具有高负载能力的浮力水装置的 SiO2 微/纳米管垂直阵列。

Vertical arrays of SiO2 micro/nanotubes templated from Si pillars by chemical oxidation for high loading capacity buoyant aquatic devices.

机构信息

Department of Materials Science and Engineering, Yonsei University , Seoul 120-749, Korea.

出版信息

ACS Appl Mater Interfaces. 2013 Dec 26;5(24):13441-7. doi: 10.1021/am4043504. Epub 2013 Dec 13.

Abstract

A simple and facile method to fabricate SiO2 micro- or nanotubes has been demonstrated based on room temperature wet chemical oxidation of a porous layer of Si pillar templates that have been prepared by metal-assisted chemical etching (MaCE). Under typical conditions, Si pillars produced by the MaCE have been found to be covered with a thin nanoporous Si layer. The porous Si skin layer has been chemically oxidized by simple dipping in AgNO3 solution at room temperature, which has led to seamless SiO2 shell layer thanks to the accompanying volume expansion during the wet oxidation. Following wet removal of core Si by KOH yields the SiO2 micro- or nanotubes, either in test tube shape or in open shape at both ends, depending on processing method. The vertical arrays of the SiO2 tube on the Si substrate, after hydrophobic siloxane oligomer printing, has been found to have very large loading capacity on water, due to extremely high porosity (>90%) and good enough mechanical stability. The novel method to fabricate SiO2 tubes can shed new light in design of novel aquatic devices, other than simple mimicking the leg of a water strider. Also, the method may be very helpful in various applications of SiO2 nanotubes.

摘要

已经证明,基于通过金属辅助化学刻蚀(MaCE)制备的多孔硅柱模板的室温湿化学氧化,可以制造 SiO2 微管或纳米管。在典型条件下,已经发现 MaCE 产生的硅柱被一层薄的纳米多孔硅层覆盖。多孔硅皮层通过简单地在室温下浸入 AgNO3 溶液中进行化学氧化,由于湿氧化过程中的伴随体积膨胀,从而形成了无缝的 SiO2 壳层。通过 KOH 湿法去除芯 Si 得到 SiO2 微管或纳米管,其形状为试管状或在两端为开口状,具体取决于处理方法。经过疏水性硅氧烷低聚物印刷后,在 Si 衬底上的 SiO2 管的垂直阵列由于极高的孔隙率(>90%)和足够好的机械稳定性,对水具有非常大的负载能力。制造 SiO2 管的新方法除了简单模仿水黾的腿之外,还可以为新型水生设备的设计带来新的思路。此外,该方法在 SiO2 纳米管的各种应用中可能非常有帮助。

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