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Synthesis and characterization of Mn/Co/Ti LDH and its utilization as a photocatalyst in visible light assisted degradation of aqueous Rhodamine B

机译:Mn / Co / Ti LDH的合成表征及其在可见光辅助罗丹明B水溶液中作为光催化剂的应用

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摘要

Luminescent Mn/Co/Ti LDH, synthesized by a single step hydrothermal route, has been found to be optically responsive for utilization as a highly efficient photocatalyst in destruction of the cationic dye Rhodamine B, in aqueous solution under visible light irradiation. The material has been found to be better than the commercial catalysts like MnO, CoO, TiO2 and Degussa P25. Multiple techniques like XRD, XPS, FT-IR, EIS, TG, UV-visible DRS, PL, TRES, N2-sorption–desorption, dynamic light scattering, TEM-EDS and AFM analyses were used to characterize the LDH. The results indicated Mn/Co/Ti LDH to have a multilayered crystalline structure with hexagonal morphology that carries metal ions in mixed valences, oxygen vacancies, defect states, thermal stability, narrow band gap, high surface area, and electrostatic surface charge variation with pH. The photocatalytic activity of the LDH could be co-related with the structural aspects such as oxidation states, narrow band gap, high surface area and existence of defects. The active species responsible for photocatalysis have been evaluated with EPR, terephthalic acid fluorescence probe and indirect radical-hole trapping experiments. The photodegradation mechanism involves electron and hole hopping across the material and also photosensitization of the dye. Ex situ 1H-NMR and GC-MS analyses of the colorless end products of Rhodamine B destruction provide further insight into the reaction mechanism. The complete mineralization of the decolorized end product of degradation was evaluated with TOC analysis. The results indicate the potential for using multi metal incorporated LDH in destroying dyes and their degradation products in industrial wastewater.
机译:已发现通过一步水热路线合成的发光Mn / Co / Ti LDH在可见光照射下对水溶液中的阳离子染料若丹明B的破坏具有光学响应,可作为高效光催化剂的用途。已经发现该材料比诸如MnO,CoO,TiO2和Degussa P25的商业催化剂更好。 XDH,XPS,FT-IR,EIS,TG,紫外可见DRS,PL,TRES,N2吸附-解吸,动态光散射,TEM-EDS和AFM分析等多种技术用于表征LDH。结果表明Mn / Co / Ti LDH具有六方形态的多层晶体结构,该结构以混合价,氧空位,缺陷状态,热稳定性,窄带隙,高表面积和静电表面电荷随pH的变化携带金属离子。 。 LDH的光催化活性可能与结构状态如氧化态,窄带隙,高表面积和缺陷的存在有关。通过EPR,对苯二甲酸荧光探针和间接自由基-空穴捕获实验对负责光催化的活性物质进行了评估。光降解机理涉及跨材料的电子和空穴跳跃,以及染料的光敏性。罗丹明B破坏无色终产物的异位 1 H-NMR和GC-MS分析提供了对反应机理的进一步了解。用TOC分析评估降解的脱色终产物的完全矿化作用。结果表明使用多金属结合的LDH破坏工业废水中的染料及其降解产物的潜力。

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