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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Silica coating and photocatalytic activities of ZnO nanoparticles: Effect of operational parameters and kinetic study
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Silica coating and photocatalytic activities of ZnO nanoparticles: Effect of operational parameters and kinetic study

机译:纳米氧化硅的二氧化硅涂层和光催化活性:操作参数和动力学研究的影响

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摘要

Silica-coating ZnO nanoparticles were prepared using the hydrothermal method. The prepared nanopartides were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM) and energy dispersive X-ray Spectroscopy (EDX). It was found that ultrafine core/shell structured silica-coating ZnO nanoparticles were successfully obtained. TEM analysis revealed a continuous and uniform silica coating layer of about 8 nm in thickness on the surface of ZnO nanopartides. The photocatalytic performance of silica-coating ZnO core/shell nanoparticles in methylene blue aqueous solution was investigated. The effects of some operational parameters such as pH value, nanocatalyst loading and initial MB concentration on the degradation efficiency were discussed. Kinetic parameters were experimentally determined and a pseudo-first-order kinetic was observed. Thus, the main advantage of the coating is the stability of the photocatalysts and the better performance in acidic or alkaline solutions. Compared to ZnO the maximum apparent rate constant is obtained at pH 8.5 (pH 11.5 in case of bare ZnO). Moreover, the Langmuir adsorption model was applied to describe the equilibrium isotherm at different MB concentration. The applicability of the Langmuir isotherm suggests monolayer coverage of the MB onto surface of silica-coating ZnO nanoparticles. The kinetics of the adsorption with respect to the initial dye concentration, were also investigated. The pseudo-first-order and second-order kinetic models were used and the rate constants were evaluated. The kinetic studies revealed that the pseudo-second-order kinetic model better represented the adsorption kinetics, suggesting that the adsorption process may be chemisorption. (C) 2014 Published by Elsevier B.V.
机译:使用水热法制备了二氧化硅包覆的ZnO纳米粒子。通过X射线衍射(XRD),透射电子显微镜(TEM),扫描电子显微镜(SEM)和能量色散X射线光谱(EDX)对制备的纳米粒子进行表征。发现成功获得了超细核/壳结构的二氧化硅包覆的ZnO纳米颗粒。 TEM分析显示在ZnO纳米粒子的表面上连续且均匀的二氧化硅涂层,其厚度为约8nm。研究了二氧化硅包覆的ZnO核/壳纳米粒子在亚甲基蓝水溶液中的光催化性能。讨论了pH值,纳米催化剂负载量和初始MB浓度等操作参数对降解效率的影响。通过实验确定动力学参数,并观察到拟一级动力学。因此,涂层的主要优点是光催化剂的稳定性和在酸性或碱性溶液中的更好性能。与ZnO相比,最大表观速率常数在pH 8.5(裸露ZnO的情况下为pH 11.5)下获得。此外,应用Langmuir吸附模型描述了不同MB浓度下的等温线。 Langmuir等温线的适用性表明,MB在二氧化硅涂层的ZnO纳米颗粒表面上单层覆盖。还研究了相对于初始染料浓度的吸附动力学。使用伪一级和二级动力学模型,并评估速率常数。动力学研究表明,拟二级动力学模型较好地代表了吸附动力学,表明吸附过程可能是化学吸附。 (C)2014由Elsevier B.V.发布

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