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Programming Surface Morphology of TiO2 Hollow Spheres and Their Superhydrophilic Films

机译:TiO2空心球及其超亲水膜的编程表面形貌

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Long-term stable superhydrophilic films without UV irradiation consisting of hierarchical raspberrylike metal-ion-doped TiO2 hollow spheres were fabricated by a simple spinning-coat method. The hierarchical surface morphology of metal-ion-doped TiO2 hollow spheres can be programmed from "smooth", "moderate roughness" to "roughness" by adjusting the molar ratio of Co~(2+) ions to Zn~(2+) ions. Our results show that the substitution Co~(2+) and Zn~(2+) for Ti~(2+) has effect on the phase transformation from anatase to rutile and further lead to different papillas on the surface of hollow nanospheres. And their films consisting of corresponding hollow nanospheres can be controlled from hydrophilic to superhydrophilic: 28, 7, and 0°. Therefore, our works open an avenue to design hierarchical surface morphology of nanospheres and further fabricate antifogging superhydrophilic films.
机译:通过简单的旋涂方法制备了无级辐射的长期稳定的超亲水膜,该膜由分层的覆盆子状金属离子掺杂的TiO2空心球组成。可以通过调节Co〜(2+)离子与Zn〜(2+)离子的摩尔比,将金属离子掺杂的TiO2空心球的层级表面形态从“光滑”,“中等粗糙度”更改为“粗糙度”。 。我们的研究结果表明,用Co〜(2+)和Zn〜(2+)替代Ti〜(2+)对从锐钛矿到金红石的相变具有影响,并进一步导致空心纳米球表面出现不同的乳突。并且它们的由相应的中空纳米球组成的薄膜可以控制为从亲水性到超亲水性:28、7和0°。因此,我们的工作为设计纳米球的分层表面形态开辟了道路,并进一步制造了防雾超亲水膜。

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