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Gold cluster-loaded dendritic nanosilica: single particle luminescence and catalytic properties in the bulk

机译:黄金cluster-loaded树突nanosilica:单身粒子发光和催化性能大部分

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摘要

We report a hybrid material in which surface anchoring-induced enhanced luminescence of Au-QC@BSA clusters on high surface area dendritic fibrous nanosilica of 800 nm diameter enabled their luminescence imaging at a single particle level. The photophysical and structural properties of the hybrid material were characterized by various spectroscopic and microscopic techniques. Concomitant imaging using scattering and luminescence of such mesostructures and their response to analytes have been used to develop a chemical sensor. The hybrid material was found to be catalytically active in silane to silanol conversion, and 100% conversion was observed in 4 h when the reaction was carried out at 30 degrees C in the presence of light. Such materials at submicron dimensions with enhanced surface area, emission in the solid state along with a high quantum yield of 12% in water along with enhanced scattering, and surface functionalities present numerous benefits for the creation of multifunctional materials.
机译:我们报告一个混合材料的表面anchoring-induced增强荧光的Au-QC@BSA集群高表面积树突的直径800纳米纤维nanosilica启用他们在单粒子发光成像的水平。混合材料的属性各种光谱的特征显微技术。散射和发光等中构造及其对分析物的反应已经被用于开发一种化学传感器。混合材料被发现催化地活跃在硅烷硅醇转换,和100%转换是观察在4 h反应进行了在30摄氏度的存在吗的光。增强的表面积,排放的固体状态和高量子产率的12%水连同散射增强,表面功能目前众多的好处建立多功能材料。

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