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六方密堆积的分级非晶TiO₂纳米柱阵列:可转移性、增强的光催化活性以及无需紫外线照射的超双亲性。

Hexagonal-close-packed, hierarchical amorphous TiO2 nanocolumn arrays: transferability, enhanced photocatalytic activity, and superamphiphilicity without UV irradiation.

作者信息

Li Yue, Sasaki Takeshi, Shimizu Yoshiki, Koshizaki Naoto

机构信息

Nanotechnology Research Institute, National Institute of Advanced Industrial Science and Technology, Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

J Am Chem Soc. 2008 Nov 5;130(44):14755-62. doi: 10.1021/ja805077q. Epub 2008 Oct 10.

Abstract

A hexagonal-close-packed (hcp), hierarchical amorphous TiO2 nanocolumn array was fabricated by pulsed laser deposition (PLD) using a PS colloidal monolayer as a template under a high pressure (6.7 Pa) of background oxygen gas. The formation mechanism was investigated, and a model of multidirection glancing deposition was proposed to explain the formation process. This strategy can be extended to the fabrication of similar structures using different materials. Interestingly, this nanostructured array could be transferred to almost any substrate, avoiding restriction of substrate types in fabrication of nanocolumn arrays, which is helpful in the design and creation of nanodevices on various desired substrates. This hierarchical nanocolumn array exhibits excellent superamphiphilicity with both water and oil contact angles of 0 degrees, without further UV irradiation. More importantly, the amorphous TiO2 nanocolumn array demonstrates better performance in photocatalytic activity than an anatase nanocolumn array due to its large surface area and special microstructures, suggesting that the surface area of the TiO2 is preferable to its crystal structure for enhancing photocatalytic activity. The combination of superamphiphilicity and photocatalytic activity gives the surface an excellent self-cleaning effect.

摘要

通过脉冲激光沉积(PLD),以聚苯乙烯(PS)胶体单层为模板,在背景氧气高压(6.7 Pa)下制备了一种六方密排(hcp)的分级非晶TiO₂纳米柱阵列。研究了其形成机理,并提出了多方向掠射沉积模型来解释形成过程。该策略可扩展到使用不同材料制备类似结构。有趣的是,这种纳米结构阵列可以转移到几乎任何衬底上,避免了纳米柱阵列制造中对衬底类型的限制,这有助于在各种所需衬底上设计和制造纳米器件。这种分级纳米柱阵列表现出优异的超双亲性,水和油的接触角均为0度,无需进一步紫外线照射。更重要的是,非晶TiO₂纳米柱阵列由于其大表面积和特殊微观结构,在光催化活性方面比锐钛矿纳米柱阵列表现出更好的性能,这表明TiO₂的表面积对增强光催化活性比其晶体结构更重要。超双亲性和光催化活性的结合赋予了表面优异的自清洁效果。

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