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首页> 外文期刊>Applied Surface Science >Mesoporous monolith designs of mixed phased titania codoped Sm~(3+)/Er~(3+) composites: A super responsive visible light photocatalysts for organic pollutant clean-up
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Mesoporous monolith designs of mixed phased titania codoped Sm~(3+)/Er~(3+) composites: A super responsive visible light photocatalysts for organic pollutant clean-up

机译:混合相共掺二氧化钛Sm〜(3 +)/ Er〜(3+)复合材料的介孔整体设计:超响应型可见光光催化剂,用于有机污染物的净化

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In this work, we report on the synthesis of a new class photocatalyst material of Sm3+/Er3+ codoped TiO2 mesoporous monolithic network using a surfactant mediated microemulsion micro-phased sol-gel technique. The crack-free monoliths were characterized using, XRD, SEM-EDX, TEM-SAED, XPS, UV-Vis-DRS, PLS, TG-DTA, FT-IR, Raman, and BET analysis. The study revealed that the stoichiometric mixed dopant composite of Sm2+ and Er3+ with TiO2 exhibited excellent visible light photocatalytic activity. The XRD data showed that the Sm3+/ Er3+ codoped TiO2 monolith exhibited a mixed phase ((75%) anatase - (25%) ruffle) crystallinity, with well-defined mesopores. The TEM and SEM images confirmed the existence of a uniform pattern of highly ordered worm-like structure of mesoporous design, which corroborates with the absorption-desorption isotherm pattern. The XPS spectra confirmed the trivalent state of the Sm-Er composite, and their surface dispersion onto the Ti-OTi lattice. The UV-Vis-DRS analysis showed an energy band gap value of 3.26, 3.02, and 2.80 eV, for undoped, (3.0 mol%) Sm3+ doped, and (0.6 mol%) Er3+/(3.0 mol%) Sm3+ codoped TiO2 monoliths, respectively, which reflected on the visible light absorption characteristics of the Sm3+/Er3+ doped TiO2 composite. The photoluminescence emission spectra showed that the (0.6 mol%) Er3+/(3.0 mol%) Sm3+ composite as the best performing visible light photocatalyst. The efficacy of the proposed class of photocatalytic materials was investigated for textile dye degradation using Acid Blue 113, as the model organic dye pollutant, which was dissipated within 30 min of visible light irradiation. For the superior performance of the photocatalyst, the operational parameters such as, solution pH, dopant/co-dopant stoichiometry, photocatalyst quantity, dye concentration, light intensity, photooxidizers, degradation kinetics, reusability, etc., were studied and optimized. The dye degradation was monitored using UV-Visible spectrophotometry, and the extent of dye mineralization was confirmed by TOC analysis.
机译:在这项工作中,我们报告了使用表面活性剂介导的微乳液微相溶胶-凝胶技术合成Sm3 + / Er3 +共掺杂的TiO2介孔整体网络的新型光催化剂材料。使用XRD,SEM-EDX,TEM-SAED,XPS,UV-Vis-DRS,PLS,TG-DTA,FT-IR,拉曼和BET分析对无裂纹的整体材料进行表征。研究表明,Sm2 +和Er3 +与TiO2的化学计量混合掺杂剂复合物具有出色的可见光光催化活性。 XRD数据表明,Sm3 + / Er3 +共掺杂的TiO2整料表现出混合相((75%)锐钛矿-(25%)皱纹)结晶度,并具有明确的中孔。 TEM和SEM图像证实了介孔设计的高度有序蠕虫状结构的均匀模式的存在,这与吸收-解吸等温线模式相符。 XPS光谱证实了Sm-Er复合材料的三价态及其表面分散在Ti-OTi晶格上。 UV-Vis-DRS分析显示,对于未掺杂的(3.0 mol%)Sm3 +掺杂和(0.6 mol%)Er3 + /(3.0 mol%)Sm3 +共掺杂的TiO2整料,能带隙值为3.26、3.02和2.80 eV分别反映了Sm3 + / Er3 +掺杂的TiO2复合材料的可见光吸收特性。光致发光光谱表明,(0.6 mol%)Er3 + /(3.0 mol%)Sm3 +复合材料是性能最好的可见光光催化剂。使用酸性蓝113作为模型有机染料污染物,研究了拟议类别的光催化材料对纺织品染料降解的功效,该染料在可见光照射后30分钟内消散。为了获得优异的光催化剂性能,研究并优化了操作参数,例如溶液pH,掺杂剂/共掺杂化学计量,光催化剂数量,染料浓度,光强度,光氧化剂,降解动力学,可重复使用性等。使用紫外可见分光光度法监测染料降解,并通过TOC分析确认染料矿化的程度。

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