Monodisperse core-shell structured magnetic mesoporous aluminosilicate nanospheres with large dendritic mesochannels

The rational design and precise synthesis of multifunctional hybrid nanostructures with a tailored active core and a large, dendritic, modified mesoporous structured shell can promote catalysis, energy storage, and biological applications. Here, an oil-water biphase stratification coating strategy h...

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Veröffentlicht in:Nano research 2015-08, Vol.8 (8), p.2503-2514
Hauptverfasser: Yang, Jianping, Shen, Dengke, Wei, Yong, Li, Wei, Zhang, Fan, Kong, Biao, Zhang, Shaohua, Teng, Wei, Fan, Jianwei, Zhang, Weixian, Dou, Shixue, Zhao, Dongyuan
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Sprache:eng
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Zusammenfassung:The rational design and precise synthesis of multifunctional hybrid nanostructures with a tailored active core and a large, dendritic, modified mesoporous structured shell can promote catalysis, energy storage, and biological applications. Here, an oil-water biphase stratification coating strategy has been developed to prepare monodisperse magnetic dendritic mesoporous silica core-shell structured nano- spheres. These sophisticated Fe3O4@SiO2@dendritic-mSiO2 nanospheres feature large dendritic open pores (2.7 and 10.3 nm). Significantly, the silica shells can be converted into dendritic mesoporous aluminosilicate frameworks with unchanged porosity, a Si/Al molar ratio of 14, and remarkably strong acidic sites, through a post-synthesis approach. In addition, the resultant magnetic dendritic mesoporous aluminosilicate nanospheres exhibit outstanding properties and promising application in phosphate removal from wastewater.
ISSN:1998-0124
1998-0000
DOI:10.1007/s12274-015-0758-2