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Ni/Co/Ti layered double hydroxide for highly efficient photocatalytic degradation of Rhodamine B and Acid Red G: a comparative study

机译:Ni / Co / Ti层状双氢氧化物对罗丹明B和酸性红G的高效光催化降解:对比研究

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摘要

Optically responsive, luminescent Ni/Co/Ti layered double hydroxide (LDH), synthesized by a single step hydrothermal route, exhibits highly efficient photodegradation of cationic and anionic dyes, Rhodamine B (∼99.8%) and Acid Red G (∼99.6%) respectively, better than that of commercial catalysts like NiO, CoO and TiO2.The LDH has been characterized by using XRD, XPS, PL, TRES, EIS, TEM, SEM-EDX, AFM, UV-visible DRS, N2-sorption desorption, ξ-potential, FT-IR and TG techniques. The characterized results indicate that the LDH possesses hexagonal morphology, a high surface area, a narrow band gap, defect states and oxygen vacancies within its layered framework. The degradations follow the e–h+ hopping pattern and dye-photosensitized mechanistic pathways. The active species generated during photocatalysis have been evaluated using ESR, terephthalic acid fluorescence probe and indirect radical–hole trapping experiments. The colourless end products were investigated by GC-MS and reaction mechanisms have been established for the degradation of the dyes to less toxic and more eco-friendly molecules than their parent analogues. Dye mineralization studies (performed using a TOC analyser) and closure of carbon mass balance experiments quantified the amount of carbon entering and leaving the reaction systems. Reaction mechanisms have been proposed on the basis of the asymmetric cleavage of the dyes. The LDH demonstrated its remarkable efficiency in the field of waste water treatment.
机译:通过一步水热法合成的具有光学响应性的发光Ni / Co / Ti层状双氢氧化物(LDH),对阳离子和阴离子染料,若丹明B(〜99.8%)和酸性红G(〜99.6%)表现出高效的光降解作用。 LDH的特征是使用XRD,XPS,PL,TRES,EIS,TEM,SEM-EDX,AFM,UV可见DRS,N2吸附脱附, ξ势,FT-IR和TG技术。表征结果表明,LDH在其层状框架内具有六边形形态,高表面积,窄带隙,缺陷状态和氧空位。降解遵循e - –h + 跳跃模式和染料光敏机理。已使用ESR,对苯二甲酸荧光探针和间接自由基-空穴捕获实验对光催化过程中产生的活性物质进行了评估。通过GC-MS研究了无色终产物,并且已经建立了将染料降解为比其母体类似物毒性更小,更生态友好的分子的反应机理。染料矿化研究(使用TOC分析仪进行)和碳平衡实验的结束量化了进入和离开反应系统的碳量。已经基于染料的不对称裂解提出了反应机理。 LDH在废水处理领域表现出了卓越的效率。

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