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CdSe纳米复合材料光催化活性的提高:蒙脱石载体对高效去除靛蓝胭脂红的影响。

Improved photocatalytic activity of CdSe-nanocomposites: effect of Montmorillonite support towards efficient removal of Indigo Carmine.

作者信息

Chikate Rajeev C, Kadu Brijesh S

机构信息

Nanoscience Group, Department of Chemistry, Post-graduate and Research Centre, MES Abasaheb Garware College, Karve Road, Pune 411004, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2014 Apr 24;124:138-47. doi: 10.1016/j.saa.2013.12.099. Epub 2014 Jan 4.

Abstract

To ascertain the contribution of adsorptive capacity of Montmorillonite (MMT) towards photocatalytic process, CdSe-MMT nanocomposites are explored for adsorptive removal of Indigo Carmine (IC). The nanocomposites are prepared via two approaches: (a) in-situ formation and (b) wet impregnation of CdSe onto MMT support. XRD analysis of composites suggested the proper dispersion of CdSe nanoparticles in MMT clay matrix with spherical morphology of 5-10nm sized CdSe nanoparticles. These nanocomposites are employed for photocatalytic degradation of IC under visible light at various IC concentrations and different amount of catalyst. Kinetics of IC is found to be of pseudo-second order with 10% in-situ and 50% loaded nanocomposites exhibiting better photocatalytic activity at 1.0 g L(-)(1) catalyst and 100 mg L(-)(1)of IC. Dynamics of its adsorptive removal on the composite surface evaluated by employing error estimation tools clearly suggest that Redlich-Peterson and Flory-Huggins adsorption isotherms effectively describe the multi-layer process. It is observed that spontaneous, exothermic chemisorption process occurring on the surface indeed enhances photocatalytic activity. Moreover, such a feature is also found to be associated with diffusion of IC within mesoporous structure of MMT that subsequently favors pore-diffusion controlled adsorption process. IR spectral analysis demonstrated that IC molecule is degraded on the catalyst surface. Light or oxygenated species induced photocorrosion of CdSe is suppressed due to its composite formation with MMT that results in 620 ppm removal of IC during successive cycles; a feature ascribed as improved photocatalytic activity for CdSe nanoparticles.

摘要

为确定蒙脱石(MMT)的吸附能力对光催化过程的贡献,对CdSe-MMT纳米复合材料进行了研究,以吸附去除靛蓝胭脂红(IC)。通过两种方法制备纳米复合材料:(a)原位形成和(b)将CdSe湿浸渍到MMT载体上。复合材料的XRD分析表明,CdSe纳米颗粒在MMT粘土基质中分散良好,CdSe纳米颗粒呈球形形态,尺寸为5-10nm。这些纳米复合材料用于在可见光下对不同IC浓度和不同催化剂用量的IC进行光催化降解。发现IC的动力学为伪二级动力学,10%原位和50%负载的纳米复合材料在1.0 g L⁻¹催化剂和100 mg L⁻¹的IC条件下表现出更好的光催化活性。通过误差估计工具评估其在复合材料表面的吸附去除动力学清楚地表明,Redlich-Peterson和Flory-Huggins吸附等温线有效地描述了多层过程。观察到表面发生的自发、放热化学吸附过程确实增强了光催化活性。此外,还发现这种特性与IC在MMT介孔结构内的扩散有关,这随后有利于孔扩散控制的吸附过程。红外光谱分析表明,IC分子在催化剂表面降解。由于与MMT形成复合材料抑制了光或含氧物种对CdSe的光腐蚀,在连续循环过程中导致620 ppm的IC去除;这一特性归因于CdSe纳米颗粒光催化活性的提高。

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