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Influence of Annealing on Photocatalytic Performance and Adhesion of Vacuum Cold-Sprayed Nanostructured TiO{sub}2 Coating

机译:退火对真空冷喷涂纳米结构TiO {sub} 2涂层光催化性能和附着力的影响

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摘要

Composite powder was prepared using primary nanoTiO{sub}2 powder and polyethylene glycol (PEG). The nanoTiO{sub}2 coating was deposited through vacuum cold spray using both the composite powder and the primary nanopowder. The influence of annealing on the coating adhesion and photocatalytic activity was investigated. The coating adhesion was evaluated through erosion test by water jet. The photocatalytic performance of the coatings was evaluated through photodegradation of phenol in water. Results showed that annealing of the coating at a temperature from 450 to 500 ℃ yielded both higher activity and better adhesion. The adhesion of the coating deposited using the composite powder was better than that using the primary nanoTiO{sub}2 powder. It was found that the TiO{sub}2 coating, resulting from the composite powder, presented much higher activity than that deposited with the primary nanopowder. The better activity is attributed to the existence of large pores resulting from the stacking of composite powder, which benefits the reactants' transportation through the porous coating.
机译:使用初级纳米TiO {sub} 2粉末和聚乙二醇(PEG)制备复合粉末。使用复合粉末和初级纳米粉末,通过真空冷喷涂沉积纳米TiO {sub} 2涂层。研究了退火对涂层附着力和光催化活性的影响。通过水射流的腐蚀试验评价涂层的粘附性。通过苯酚在水中的光降解来评估涂料的光催化性能。结果表明,在450至500℃的温度下对涂层进行退火可以产生更高的活性和更好的附着力。使用复合粉末沉积的涂层的附着力比使用初次纳米TiO {sub} 2粉末更好。发现由复合粉末产生的TiO {sub} 2涂层具有比用初级纳米粉末沉积的涂层高得多的活性。更好的活性归因于由于复合粉末的堆积而导致的大孔的存在,这有利于反应物通过多孔涂层的运输。

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