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Photocatalytic Nb2O5-doped TiO2 nanoparticles for glazed ceramic tiles

机译:光催化NB2O5掺杂TiO2用于玻璃瓷砖的纳米粒子

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摘要

TiO2 nanoparticles are currently used as coating for self-cleaning building products. In order to achieve high self-cleaning efficiency for outdoor applications, it is important that titania is present as anatase phase. Moreover, it is desirable that the particle sizes are in nano-range, so that a large enough surface area is available for enhanced catalytic performance. In this work, TiO2 nanoparticles doped with 0-5 mol% Nb2O5 were synthesized by co-precipitation. Nb2O5 postponed the anatase to rutile transformation of TiO2 by about 200 degrees C, such that after calcination at 700 degrees C, no rutile was detected for 5 mol% Nb2O5-doped TiO2, while undoped TiO2 presented 90 wt% of the rutile phase. A systematic decreasing on crystallite size and increasing on specific surface area of TiO2 were observed with higher concentration of Nb2O5 dopant. Photocatalytic activity of anatase polymorph was measured by the decomposition rate of methylene blue under ultraviolet and daylight illumination and compared to commercial standard catalyst (P25). The results showed enhanced catalysis under UV and visible light for Nb2O5-doped TiO2 as compared to pure TiO2. In addition, 5 mol% Nb2O5-doped TiO2 presented higher photocatalytic activity than P25 under visible light. The enhanced performance was attributed to surface chemistry change associated with a slight shift in the band gap. (C) 2015 Published by Elsevier Ltd and Techna Group S.r.l.
机译:TiO2纳米颗粒目前用作自清洁建筑产品的涂层。为了实现户外应用的高自清洁效率,重要的是TiNANIA作为锐钛矿阶段存在。此外,期望粒径在纳米范围内,使得足够大的表面积可用于增强催化性能。在这项工作中,通过共沉淀合成掺杂有0-5摩尔%NB2O5的TiO2纳米颗粒。 Nb2O5将锐钛矿推迟到金红石转化的TiO2约200℃,使得在700℃下煅烧后,未检测到5mol%Nb2O5掺杂TiO 2的金红石,而未掺杂的TiO 2呈列90wt%的金红石相。通过较高浓度的Nb2O5掺杂剂观察到微晶尺寸和在TiO 2的比表面积上增加的系统减小。通过紫外线和日光照射下亚甲基蓝的分解速率测量锐钛矿多晶型物的光催化活性,与商业标准催化剂相比(P25)进行比较。与纯TiO 2相比,结果表明,对于Nb2O5掺杂TiO 2的UV和可见光,显着催化。此外,5mol%Nb2O5掺杂的TiO 2在可见光下呈现比P25更高的光催化活性。增强的性能归因于与带隙中略微偏移相关的表面化学变化。 (c)2015年由elsevier有限公司和Techna Group S.R.L出版

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