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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mesoporous silica encapsulating upconversion luminescence rare-earth fluoride nanorods for secondary excitation
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Mesoporous silica encapsulating upconversion luminescence rare-earth fluoride nanorods for secondary excitation

机译:介孔二氧化硅包封用于二次激发的上转换发光稀土氟化物纳米棒

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摘要

Mesoporous silica encapsulating upconversion luminescence NaYF_4 nanorods with uniform core-shell structures have been successfully synthesized by the surfactant-assistant sol-gel process. The thickness of ordered mesoporous silica shells can be adjusted from 50 to 95 nm by varying the amount of hydrolyzed silicate oligomer precursors from tetraethyl orthosilicate (TEOS), which further influences the BET surface area, pore volume, and the luminescence intensity. After coated with mesoporous silica shells, the hydrophobic nanorods is rendered to hydropholic simultaneously. The obtained β-NaYF _4@SiO_2@mSiO_2 core-shell nanorods possess high surface area (71.2-196 m~2g~(-1)), pore volume (0.07-0.17 cm~3 g~(-1)), uniform pore size distribution (2.3 nm), and accessible channels. Furthermore, the uniform core-shell nanorods show strong upconversion luminescence property similar to the hexagonal upconversion cores. The open mesopores can not only provide convenient transmission channels but also offer the huge location for accommodation of large molecules, such as fluorescent dyes and quantum dots. The secondary-excitation fluorescence of Rhodamine B is generated from the upconversion rare-earth fluoride nanorods cores to the fluorescent dyes loaded in the mesoporous silica shells.
机译:通过表面活性剂辅助溶胶-凝胶法成功地合成了具有均匀核壳结构的介孔二氧化硅包封的高转换发光NaYF_4纳米棒。通过改变原硅酸四乙酯(TEOS)的水解硅酸盐低聚物前体的量,可以将有序介孔二氧化硅壳的厚度从50 nm调整到95 nm,这进一步影响BET表面积,孔体积和发光强度。用中孔二氧化硅壳包被后,疏水纳米棒同时变成疏水的。所得β-NaYF_4 @ SiO_2 @ mSiO_2核壳纳米棒表面积大(71.2-196 m〜2g〜(-1)),孔容(0.07-0.17 cm〜3 g〜(-1)),均一孔径分布(2.3 nm),以及可及的通道。此外,均匀的核-壳纳米棒表现出类似于六边形上转换核的强上转换发光性质。开放的中孔不仅可以提供便利的传输通道,而且可以为容纳大分子(例如荧光染料和量子点)提供巨大的位置。罗丹明B的二次激发荧光是由稀土氟化物纳米棒的上转换成介孔二氧化硅壳中负载的荧光染料产生的。

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