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Surface Stabilization of Nano-sized Titanium Dioxide: Improving the Colloidal Stability and the Sintering Morphology

机译:纳米二氧化钛的表面稳定化:提高胶体稳定性和烧结形态

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摘要

We have developed a simple surface modification technique to avoid irreversible agglomeration of titanium dioxide nanoparticles. The technique is based on hydrolysis-precipitation procedure, using TiOSO4 as a precursor and water as a hydrolyser and a preparation medium. Diethylene glycol monomethyl ether is used as a surface modifier. Using a variety of characterization techniques, including XRD, SEM, TEM, TGA, DTA, AES, XPS, ELS and DLS, the resulting powders and the mechanism of surface stabilization were investigated. According to the proposed mechanism, hydroxyl-terminated ether molecules react with the surface of nanoparticles and then chemically adsorbed there. The layer of adsorbed molecules prevents the strong irreversible agglomeration during precipitation from the sol. The obtained anatase powder remains within the nanometric scale under heat-treatment up to 760 °C. The powders can be re-dispersed in water by ultrasound treatment, resulting in relatively stable aqueous dispersions. In addition, the morphology of sintered bodies made of these powders is significantly improved as compared to non-stabilized powders, due to less agglomeration in the initial sintering stage.
机译:我们已经开发出一种简单的表面改性技术,以避免二氧化钛纳米粒子发生不可逆的团聚。该技术基于水解沉淀过程,以TiOSO4 为前体,水为水解剂和制备介质。二甘醇单甲醚用作表面改性剂。使用包括XRD,SEM,TEM,TGA,DTA,AES,XPS,ELS和DLS在内的多种表征技术,研究了所得粉末和表面稳定化机理。根据提出的机理,端羟基醚分子与纳米颗粒的表面反应,然后化学吸附在纳米颗粒的表面。吸附的分子层可防止从溶胶中沉淀出来时强烈的不可逆的团聚。所获得的锐钛矿粉末在高达760°C的热处理下仍保持在纳米级。可以通过超声处理将粉末重新分散在水中,从而得到相对稳定的水分散体。另外,由于这些粉末制成的烧结体的形态在初始烧结阶段较少结块,因此与非稳定粉末相比,其形态得到了显着改善。

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