2Os nanoporous network via anodization for photocatalytic activity of methyl oran'/> Enhancing Photocatalytic Performance of Nanoporous Nb<inf>2</inf>O<inf>5</inf>Doped Platinum
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Enhancing Photocatalytic Performance of Nanoporous Nb2O5Doped Platinum

机译:增强纳米孔Nb 2 O 5 掺杂铂的光催化性能

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Highly ordered Nb2Os nanoporous network via anodization for photocatalytic activity of methyl orange (MO) is presented. Persistent organic pollutants (POPs) are organic combinations that are unaffected to environmental degradation through chemical, biological, and photocatalytic processes. POPs have significant effects on human health and environment. This study will help reducing POPs. Anodization method is used to synthesis Nb2O5nanoporous structure. In this research, anodization duration is varies from 30 to 90 minutes to study the effect of durations on photocatalytic performance. To determine the rate of absorption of MO, UV-VIS Spectrophotometer is used to measure the absorption. The enhancement of photocatalytic property is desired in reducing contamination of POP in water produce by textile industries. The degradation of MO were influenced by the dimension of Nanoporous Nb2O5, showing that highly ordered nanoporous network as well as larger size of nanoporous Nb2O5have better performance of photocatalytic activity.
机译:高度有序的NB. 2 介绍了通过阳极氧化的OS纳米多孔网络,用于甲基橙(MO)的光催化活性。持久性有机污染物(POPs)是通过化学,生物和光催化过程不受环境降解的有机组合。 POPS对人类健康和环境有重大影响。这项研究将有助于减少流行音乐。阳极氧化方法用于合成NB 2 O. 5 纳米多孔结构。在本研究中,阳极氧化持续时间在30到90分钟内变化,以研究持续时间对光催化性能的影响。为了确定Mo的吸收率,使用UV-Vis分光光度计来测量吸收。期望增强光催化性质,减少纺织业水产品中流行物的污染。 MO的降解受纳米孔NB的尺寸的影响 2 O. 5 ,表明高度有序的纳米多孔网络以及纳米多孔NB的较大尺寸 2 O. 5 具有更好的光催化活动性能。

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