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Optimising processing conditions for the functionalisation of photocatalytic glazes by ZnO nanoparticle deposition

机译:通过ZnO纳米颗粒沉积优化光催化釉函数官能化的加工条件

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ZnO nanospheres were synthesised and then deposited by both single- and double-fire fast processes on as-prepared ceramic substrates. The photocatalytic degradation of resazurin ink was tested under UV light. The single-fired samples did not show any evidence of photocatalytic activity because the nanoparticles melted during sintering at 1210°C. The double-fire ZnO spray-coating method successfully produced glazed materials with an active ZnO surface layer despite the high sintering temperature. The influence of experimental parameters, including the ZnO nanoparticle loading (0.03 to 1 mg/cm2 ) and firing temperature (650 to 800°C), were also investigated. Samples with a ZnO loading of 1 g/cm2 fired at 650°C showed the best photocatalytic activity. Increasing the temperature to 700 and 800°C led to the coalescence of ZnO nanoparticles, which reduced the photocatalytic activity.
机译:合成ZnO纳米球,然后通过单次陶瓷基材上的单次和双火快速加工沉积。 在紫外光下测试了转塔嗪油墨的光催化降解。 由于在1210℃下烧结期间熔融熔化,单次样品并未显示出光催化活性的任何证据。 尽管高烧结温度,双火ZnO喷涂方法用活性ZnO表面层成功地生产了釉面材料。 还研究了实验参数的影响,包括ZnO纳米颗粒加载(0.03至1mg / cm 2)和烧制温度(650至800℃)。 在650℃下烧制的ZnO负载量为1g / cm 2的样品显示出最佳的光催化活性。 将温度升至700和800°C导致ZnO纳米颗粒的聚结,其降低了光催化活性。

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