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Preparation and characterization of Sn/La co-doped TiO2 nanomaterials and their phase transformation and photocatalytic activity

机译:Sn / La共掺杂TiO2纳米材料的制备表征及其相变和光催化活性

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摘要

The pure, tin (Sn)-doped, lanthanum (La)-doped and Sn/La co-doped titanium dioxide (TiO2) nanomaterials were synthesized using sol-gel method followed by calcination at the temperature of 360 °C, 450 °C and 600 °C, respectively. The structures of the nanomaterials were characterized by X-ray diffraction (XRD), Thermogravimetric (TG), Differential Thermal Analysis (DTA), Scanning Electron Microscopy (SEM), Energy Dispersive Spectrum (EDS), Transmission Electron Microscopy (TEM), X-ray Photoelectron Spectrum (XPS), Diffuse Reflectance Spectrum (DRS), Photoluminescence Spectrum (PL), Brunauer-Emmett-Teller Measurements (BET), respectively. The photocatalytic property of the photocatalysts under UV light was evaluated through the degradation of Rhodamine B (RhB). The results show that the anatase-rutile phase transition is promoted by Sn-doping while La-doping retards the phase transition. However, La doping plays a major role in the process of phase transformation. The photocatalytic activity of pure TiO2 is affected by annealing temperature remarkably and the optimal annealing temperature is 450 °C. The photocatalytic activity of TiO2 is enhanced significantly by Sn and La doping at three different temperatures. Sn/La-TiO2 exhibits the highest degradation rates and the fastest reaction rates probably owing to the synergistic effect of Sn4+ and La3+ ions in inhibiting the recombination of photogenerated electron-hole pairs. The formation of extra surface hydroxyl groups and additional surface area are also beneficial for the photocatalytic activity.
机译:使用溶胶-凝胶法合成纯锡(Sn),镧(La)和Sn / La共掺杂的二氧化钛(TiO2)纳米材料,然后在360 C,450 C的温度下煅烧和600°C。纳米材料的结构通过X射线衍射(XRD),热重分析(TG),差热分析(​​DTA),扫描电子显微镜(SEM),能量色散谱(EDS),透射电子显微镜(TEM),X表征射线光电子能谱(XPS),漫反射光谱(DRS),光致发光光谱(PL),布鲁诺-埃米特-泰勒测量(BET)。通过罗丹明B(RhB)的降解评估了光催化剂在紫外光下的光催化性能。结果表明,Sn掺杂促进了锐钛矿-金红石相变,而La掺杂阻碍了相变。然而,La掺杂在相变过程中起主要作用。纯TiO2的光催化活性受退火温度的影响很大,最佳退火温度为450C。 Sn和La掺杂在三个不同的温度下可以显着提高TiO2的光催化活性。 Sn / La-TiO2表现出最高的降解速率和最快的反应速率,可能是由于Sn 4 + 和La 3 + 离子在抑制光生复合过程中的协同作用。电子-空穴对。额外的表面羟基的形成和额外的表面积也有利于光催化活性。

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