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Effectofsamarium dopant on photocatalytic activity of TiO2 nano-particle for the degradation of reactive orange 4

机译:sa掺杂剂对TiO2纳米粒子降解活性橙4的光催化活性的影响

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TiO2 is an ideal material for catalytic technology due to its unique properties. In this paper, the effect of Sm3+ dopant on the photocatalytic activity of TiO2 was studied to improve the catalytic efficiency of TiO2. The Sm3+-TiO2 photocatalyst was made from Titanium Tetrabutoxide and Samarium Oxide with the Sol-Gel process and used to degrade reactive orange 4 (RO4) in Azo Dyes. The characteristics of the catalyst was analyzed with XRD and TEM. The experimental results show that the catalyst has high activity for the degradation of Azo Dyes. The intensity of characteristic peaks of RO4 at both 489 nm and 285 nm weakens as the increase in the catalytic time. The Azo bonds of RO4 are more active, so that they are easily broken by oxidation. The catalytic activity of the Sm3+ doped catalyst greatly depends on the pH of solution. The catalyst has higher photo-catalytic activity at both neutral and alkaline conditions. The degradation mechanism of the Sm3+ doped TiO2 photo-catalyst was also analyzed.
机译:TiO2由于其独特的性能而成为催化技术的理想材料。本文研究了Sm3 +掺杂对TiO2光催化活性的影响,以提高TiO2的催化效率。 Sm3 + -TiO2光催化剂由四丁醇钛和氧化Sa采用Sol-Gel工艺制成,用于降解偶氮染料中的活性橙4(RO4)。用XRD和TEM分析了催化剂的特性。实验结果表明,该催化剂具有较高的降解偶氮染料的活性。随着催化时间的增加,RO4的特征峰在489 nm和285 nm处的强度减弱。 RO4的偶氮键更具活性,因此容易被氧化破坏。掺杂Sm3 +的催化剂的催化活性在很大程度上取决于溶液的pH值。该催化剂在中性和碱性条件下均具有较高的光催化活性。还分析了掺Sm3 +的TiO2光催化剂的降解机理。

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