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高氯酸铕与MABA-Si配合物的合成、表征及发光性能以及包覆结构SiO@Eu(MABA-Si)发光纳米粒子

Synthesis, characterization and luminescence of europium perchlorate with MABA-Si complex and coating structure SiO @Eu(MABA-Si) luminescence nanoparticles.

作者信息

Fu Zhi-Fang, Li Wen-Xian, Bai Juan, Bao Jin-Rong, Cao Xiao-Fang, Zheng Yu-Shan

机构信息

College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot, People's Republic of China.

Inner Mongolia Autonomous Region food inspection test center, Hohhot, People's Republic of China.

出版信息

Luminescence. 2017 May;32(3):327-333. doi: 10.1002/bio.3182. Epub 2016 Jul 19.

Abstract

This article reports a novel category of coating structure SiO @Eu(MABA-Si) luminescence nanoparticles (NPs) consisting of a unique organic shell, composed of perchlorate europium(III) complex, and an inorganic core, composed of silica. The binary complex Eu(MABA-Si) ·(ClO ) ·5H O was synthesized using HOOCC H N(CONH(CH ) Si(OCH CH ) ) (MABA-Si) and was used as a ligand. Furthermore, the as-prepared silica NPs were successfully coated with the -Si(OCH CH ) group of MABA-Si to form Si-O-Si chemical bonds by means of the hydrolyzation of MABA-Si. The binary complexes were characterized by elemental analysis, molar conductivity and coordination titration analysis. The results indicated that the composition of the binary complex was Eu(MABA-Si) ·(ClO ) ·5H O. Coating structure SiO @Eu(MABA-Si) NPs were characterized using transmission electron microscopy (TEM), scanning electron microscopy (SEM) and infrared (IR) spectra. Based on the SEM and TEM measurements, the diameter of core-SiO particles was ~400 and 600 nm, and the thickness of the cladding layer Eu(MABA-Si) was ~20 nm. In the binary complex Eu(MABA-Si) ·(ClO ) ·5H O, the fluorescence spectra illustrated that the energy of the ligand MABA-Si transferred to the energy level for the excitation state of europium(III) ion. Coating structure SiO @Eu(MABA-Si) NPs exhibited intense red luminescence compared with the binary complex. The fluorescence lifetime and fluorescence quantum efficiency of the binary complex and of the coating structure NPs were also calculated. The way in which the size of core-SiO spheres influences the luminescence was also studied. Moreover, the luminescent mechanisms of the complex were studied and explained.

摘要

本文报道了一种新型的包覆结构SiO@Eu(MABA-Si)发光纳米粒子(NPs),其由独特的有机壳层和无机核组成,有机壳层由高氯酸铕(III)配合物构成,无机核由二氧化硅构成。二元配合物Eu(MABA-Si)·(ClO₄)₃·5H₂O是使用HOOCC₆H₄N(CONH(CH₂)₃Si(OCH₂CH₃)₃)(MABA-Si)合成的,并用作配体。此外,通过MABA-Si的水解作用,所制备的二氧化硅纳米粒子成功地被MABA-Si的-Si(OCH₂CH₃)₃基团包覆,形成Si-O-Si化学键。通过元素分析、摩尔电导率和配位滴定分析对二元配合物进行了表征。结果表明二元配合物的组成为Eu(MABA-Si)·(ClO₄)₃·5H₂O。使用透射电子显微镜(TEM)、扫描电子显微镜(SEM)和红外(IR)光谱对包覆结构SiO@Eu(MABA-Si)纳米粒子进行了表征。基于SEM和TEM测量,核SiO₂颗粒的直径约为400和600nm,包覆层Eu(MABA-Si)的厚度约为20nm。在二元配合物Eu(MABA-Si)·(ClO₄)₃·5H₂O中,荧光光谱表明配体MABA-Si的能量转移到铕(III)离子激发态的能级。与二元配合物相比,包覆结构SiO@Eu(MABA-Si)纳米粒子表现出强烈的红色发光。还计算了二元配合物和包覆结构纳米粒子的荧光寿命和荧光量子效率。研究了核SiO₂球尺寸对发光的影响方式。此外,对配合物的发光机制进行了研究和解释。

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