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磁性中空材料在受限催化与环境修复中的制备、功能化及先进应用

Fabrication, functionalization and advanced applications of magnetic hollow materials in confined catalysis and environmental remediation.

作者信息

Arora Gunjan, Yadav Manavi, Gaur Rashmi, Gupta Radhika, Yadav Priya, Dixit Ranjana, Sharma Rakesh Kumar

机构信息

Green Chemistry Network Centre, Department of Chemistry, University of Delhi, Delhi-110007, India.

出版信息

Nanoscale. 2021 Jul 7;13(25):10967-11003. doi: 10.1039/d1nr01010g. Epub 2021 Jun 22.

Abstract

Magnetic hollow-structured functional hybrid materials with unique architectures and preeminent properties have always been an area of extensive research. They represent a subtle collaboration of hollow architecture, mesoporous nanostructure and magnetic character. Owing to the merits of a large void space, low density, high specific surface area, well-defined active sites and facile magnetic recovery, these materials present promising application projections in numerous fields, such as drug delivery, adsorption, storage, catalysis and many others. In this review, recent progress in the design, synthesis, functionalization and applications of magnetic hollow-meso/nanostructured materials are discussed. The first part of the review has been dedicated to the preparation and functionalization of the materials. The synthetic protocols have been broadly classified into template-assisted and template-free methods and major trends in their synthesis have been elaborated in detail. Furthermore, the benefits and drawbacks of each method are compared. The later part summarizes the application aspects of confined catalysis in organic transformations and environmental remediation such as degradation of organic pollutants, dyes and antibiotics and adsorption of heavy metal ions. Finally, an outlook of future directions in this research field is highlighted.

摘要

具有独特结构和卓越性能的磁性中空结构功能杂化材料一直是广泛研究的领域。它们体现了中空结构、介孔纳米结构和磁性特征的精妙结合。由于具有大的空隙空间、低密度、高比表面积、明确的活性位点以及易于磁性回收等优点,这些材料在药物递送、吸附、存储、催化等众多领域展现出了广阔的应用前景。在这篇综述中,我们讨论了磁性中空介观/纳米结构材料在设计、合成、功能化及应用方面的最新进展。综述的第一部分致力于材料的制备和功能化。合成方法大致分为模板辅助法和无模板法,并详细阐述了它们合成的主要趋势。此外,还比较了每种方法的优缺点。后半部分总结了受限催化在有机转化和环境修复中的应用,如有机污染物、染料和抗生素的降解以及重金属离子的吸附。最后,强调了该研究领域未来的发展方向。

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