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通过 TiO2(110) 的紫外光照射实现定向附着和图案化。

Directed adhesion and patterning by ultraviolet irradiation of TiO2(110).

机构信息

Department of Chemistry and Center for High-Rate Nanomanufacturing, The University of Massachusetts, Lowell, Lowell, Massachusetts 01854, United States.

出版信息

Langmuir. 2010 Dec 7;26(23):17795-7. doi: 10.1021/la103174f. Epub 2010 Nov 9.

Abstract

Forces of adhesion between a hydroxylated silicon oxide tip and a TiO(2)(110) surface, before and after irradiation of the surface with 254 nm light, were measured using atomic force microscopy. The work of adhesion before and after irradiation was 32 and 166 mJ/m(2), respectively, but a difference was observed only if ultraviolet light exposure was used in the presence of oxygen. The change in adhesion correlated strongly with decreasing water contact angle, which changed from ca. 70 to 0° because of irradiation. The contrast in adhesion between irradiated and nonirradiated regions of the surface makes possible a simple method of patterning molecules with micrometer, and potentially nanoscale, resolution. As an example, fluorescein was selectively adsorbed onto hydrophilic regions of the surface by spin coating an ethanolic fluorescein solution onto TiO(2)(110) that had been irradiated through a photomask.

摘要

使用原子力显微镜测量了经 254nm 光辐照前后羟基化氧化硅尖端和 TiO(2)(110)表面之间的粘附力。辐照前后的粘附功分别为 32 和 166mJ/m(2),但只有在氧气存在的情况下使用紫外线辐照才能观察到差异。粘附力的变化与水接触角的急剧下降密切相关,辐照后水接触角从约 70°变为 0°。由于辐照,表面的粘附力在辐照和未辐照区域之间存在明显差异,这使得使用具有微米甚至纳米分辨率的简单方法对分子进行图案化成为可能。例如,通过将乙醇荧光素溶液旋涂到已通过光掩模辐照的 TiO(2)(110)上,可以将荧光素选择性地吸附到表面的亲水区域。

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