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Hollow cobalt phosphonate spherical hybrid as high-efficiency Fenton catalyst

机译:空心钴膦酸酯球形混合高效芬顿催化剂

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Organic-inorganic hybrid of cobalt phosphonate hollow nanostructured spheres were prepared in a water-ethanol system through a mild hydrothermal process in the absence of any templates using diethylenetriamine penta(methylene phosphonic acid) as bridging molecule. SEM, TEM and N2 sorption characterization confirmed a hollow spherical micromorphology with well-defined porosity. The structure and chemical states of the hybrid materials were investigated by FT-IR, XPS and thermogravimetric analysis, revealing the homogeneous integrity of inorganic and organic units inside the network. As a heterogeneous catalyst, hollow cobalt phosphonate material exhibited considerable catalytic oxidizing decomposition of methylene blue with sulfate radicals as compared to cobalt phosphonate nanoparticles synthesized in single water system, which could be attributed to enhanced mass transfer and high surface area for the hollow material. Some operational parameters, including pH and reaction temperature, were found to influence the oxidation process. The present results suggest that cobalt phosphonate material can perform as an efficient heterogeneous catalyst for the degradation of organic contaminants, providing insights into the rational design and development of alternative catalysts for wastewater treatment.
机译:有机-无机杂化钴膦酸酯空心纳米球被准备通过一个轻度热液水-乙醇体系使用过程中没有任何模板二亚乙基三胺五亚甲基膦酸的酸)作为连接分子。吸附表征证实了空洞球面微观形态学和定义良好的孔隙度。混合材料进行了傅立叶变换红外光谱,XPS和热重分析,揭示了均匀的无机和有机的完整性单位内部的网络。催化剂,空心钴膦酸酯材料表现出相当大的催化氧化分解与硫酸亚甲蓝自由基与钴膦酸酯纳米粒子合成单水系统,这可能归因于提高质量传输和高表面积的空洞材料。pH值和反应温度,被发现影响氧化过程。结果表明,钴膦酸酯材料可以执行作为一种高效的异构催化剂降解的有机食品污染物,提供见解合理设计和开发的替代方案废水处理的催化剂。

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