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制备铕量子点和铕-荧光素复合纳米粒子,可用于金属离子的比率荧光检测。

Preparation of europium-quantum dots and europium-fluorescein composite nanoparticles available for ratiometric luminescent detection of metal ions.

机构信息

State Key Laboratory of Fine Chemicals, School of Chemistry, Dalian University of Technology, Dalian, People's Republic of China.

出版信息

Nanotechnology. 2010 Oct 1;21(39):395504. doi: 10.1088/0957-4484/21/39/395504. Epub 2010 Sep 6.

Abstract

The silica-encapsulated luminescent lanthanide nanoparticles have been developed for the selective tagging of a wide range of important targets in recent years, however, they are mainly limited to europium and terbium compounds. In this work, two types of europium-containing dual-luminophore silica nanoparticles, silica-encapsulated CdTe quantum dots (CdTe QDs)-BHHCT-Eu(3+) complex nanoparticles and BHHCT-Eu(3+) surface-bound silica-encapsulated fluorescein isothiocyanate (FITC) nanoparticles (BHHCT: 4, 4'-bis(1'', 1'', 1'', 2'', 2'', 3'', 3''-heptafluoro-4'', 6''-hexanedion-6''-yl)chlorosulfo-o-terphenyl), were successfully prepared using a water-in-oil (W/O) reverse microemulsion method. The results of transmission electron microscopy and luminescence spectroscopy characterizations indicate that the two types of nanoparticles are all monodisperse, spherical and uniform in size (approximately 50 nm in diameter), and have well-resolved and stable dual luminescence emission properties. The CdTe QDs-BHHCT-Eu(3+) nanoparticles can be excited at 365 nm to give dual-emission peaks at 535 and 610 nm, and the FITC-BHHCT-Eu(3+) nanoparticles can be excited at 335 nm to give dual-emission peaks at 515 and 610 nm. The luminescence response investigations of the nanoparticles to different metal ions indicate that the new nanoparticles can be used as ratiometric luminescent sensing probes for the selective detection of Cu(2+) and Fe(2+) ions, respectively. The performance of the nanoparticle probe for metal ion detection was investigated.

摘要

近年来,已经开发出了硅壳包裹的发光镧系纳米粒子,用于对各种重要目标进行选择性标记,然而,它们主要限于铕和铽化合物。在这项工作中,成功地使用油包水(W/O)反相微乳液法制备了两种含铕的双发光体硅纳米粒子,即硅壳包裹的 CdTe 量子点(CdTe QDs)-BHHCT-Eu(3+) 配合物纳米粒子和 BHHCT-Eu(3+) 表面结合的硅壳包裹的异硫氰酸荧光素(FITC)纳米粒子(BHHCT:4,4'-双(1'',1'',1'',2'',2'',3'',3''-七氟-4'',6''-己二酮-6''-基)氯磺基-o-三联苯)。透射电子显微镜和荧光光谱表征结果表明,两种类型的纳米粒子均为单分散、球形且尺寸均匀(直径约为 50nm),具有良好分辨和稳定的双荧光发射特性。CdTe QDs-BHHCT-Eu(3+) 纳米粒子可以在 365nm 激发下产生 535nm 和 610nm 的双发射峰,而 FITC-BHHCT-Eu(3+) 纳米粒子可以在 335nm 激发下产生 515nm 和 610nm 的双发射峰。纳米粒子对不同金属离子的荧光响应研究表明,新的纳米粒子可以分别用作比率荧光传感探针,用于选择性检测 Cu(2+)和 Fe(2+)离子。研究了纳米粒子探针用于金属离子检测的性能。

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