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Room-Temperature Synthesis of Single-Phase Anatase TiO2 by Aging and its Self-Cleaning Properties

机译:老化法室温合成单相锐钛矿型TiO2及其自清洁性能

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A facile process to synthesize single-phase anatase titanium dioxide nanocrystallites at room temperature was presented. The process included a sol-gel reaction in an aqueous media followed by aging a( room temperature. The anatase TiO2 was characterized using XRD, TEM and SEM The cotton fabrics-coated by the anatase nanocrystallites possessed significant photocatalytic self-cleaning properties as demonstrated by their ability to decompose a colorant and degrade red wine and coffee stains, which was equivalent to that of prepared by heating or hydrothermal methods described previously. The anatase TiO2-Coated cotton substrate also showed a high UPF rating of 50+. which means excellent UV protection to human wearers The study of the adhesion between the anatase TiO2 and the cotton substrate showed that even after 20 times of repeated launderings, the-coated substrate was still capable of decomposing stains, which indicated its photocatalytic power, though this was reduced compared to that before laundering. The tensile strength results of the anatase TiO2-coated cotton fabrics indicate that the anatase TiO2 will not damage the cotton substrate even after 20 h of continuous UV irradiation. The method of preparing single-phase anatase TiO2 revealed in this study not only eliminates the need for high temperature processing, which means energy saving, but also broadens its applications to poor acid-resistant and low thermal stability materials such as many of the biomaterials and cellulosic materials.
机译:提出了一种在室温下合成单相锐钛矿型二氧化钛纳米微晶的简便方法。该过程包括在水性介质中进行溶胶-凝胶反应,然后在室温下进行老化;使用XRD,TEM和SEM对锐钛矿型TiO2进行了表征。由锐钛矿型纳米微晶包覆的棉织物具有显着的光催化自清洁特性,如其分解色素的能力以及降解红酒和咖啡渍的能力,与之前所述的通过加热或水热方法制备的能力相当;锐钛矿型TiO2涂层棉基材的UPF等级也高达50+,这意味着优异的紫外线对穿戴者的保护对锐钛矿型TiO2与棉质底材之间的粘附力的研究表明,即使经过20次重复洗涤后,涂层底材仍能够分解污渍,这表明其光催化能力,尽管与锐钛矿型TiO2涂层棉织物的拉伸强度结果表明,锐钛型Ti即使连续紫外线照射20小时,氧气也不会损坏棉质基材。该研究揭示的制备单相锐钛矿型TiO2的方法不仅消除了对高温处理的需要,这意味着节省了能源,而且将其应用扩展到了耐酸性差和热稳定性差的材料,例如许多生物材料和材料。纤维素材料。

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