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硫杂杯[4]芳烃包覆的水溶性CdSe/ZnS量子点作为Cu2+离子荧光探针的制备与表征

Preparation and characterization of thiacalix[4]arene coated water-soluble CdSe/ZnS quantum dots as a fluorescent probe for Cu2+ ions.

作者信息

Jin Takashi, Fujii Fumihiko, Yamada Eiji, Nodasaka Yoshinobu, Kinjo Masataka

机构信息

Research Institute for Electronic Science, Hokkaido University, Sapporo 060-0812, Japan.

出版信息

Comb Chem High Throughput Screen. 2007 Jul;10(6):473-9. doi: 10.2174/138620707781996466.

Abstract

Highly fluorescent water-soluble CdSe/ZnS (core/shell) quantum dots (QDs) as a fluorescent Cu2+ ion probe were synthesized using thiacalix[4]arene carboxylic acid (TCC) as a surface coating agent. Hydrophobic trioctylphosphine oxide (TOPO) capped CdSe/ZnS QDs were overcoated with TCC in tetrahydrofuran at room temperature, and deprotonation of the carboxyl groups of TCC resulted in the formation of water-soluble QDs. The surface structure of the QDs was characterized by using transmission electron microscopy (TEM) and fluorescence correlation spectroscopy (FCS). TEM images showed that TCC-coated QDs were monodispersed with the particle size (core-shell moiety) of approximately 5 nm. Hydrodynamic diameter of the TCC-coated QDs was determined to be 8.9 nm by FCS, showing that the thickness of the surface organic layer of the QDs was approximately 2 nm. These results indicate that the surface layer of TCC-coated QDs forms a bilayer structure consisting of TOPO and TCC molecules. TCC-coated CdSe/ZnS QDs were highly fluorescent (quantum yield, 0.21) compared to the QDs surface-modified with mercaptoacetic acid and mercaptoundecanoic acid. Fluorescence of the TCC-coated QDs was effectively quenched by Cu2+ ions even in the presence of other transition metal ions such as Cd2+, Zn2+, Co2+, Fe2+, and Fe3+ ions in the same solution. The Stern-Volmer plot for the fluorescence quenching by Cu2+ ions showed a linear relationship up to 30 microM of Cu2+ ions. The ion selectivity of TCC-coated QDs was determined by measurements of fluorescence responses towards biologically important transition metal ions (50 microM) including Fe2+, Fe3+, Co2+>Zn2+, Cd2+. The fluorescence of TCC-coated QDs was almost insensitive to other biologically important ions such as Na+, K+, Mg2+, and Ca2+, suggesting that TCC-coated QDs can be used as a fluorescent Cu2+ ion probe for biological samples. A possible quenching mechanism by Cu2+ ions was also discussed on the basis of a Langmuir-type adsorption isotherm.

摘要

以硫代杯[4]芳烃羧酸(TCC)作为表面包覆剂,合成了高荧光水溶性CdSe/ZnS(核/壳)量子点(QDs)作为荧光Cu2+离子探针。在室温下,用TCC在四氢呋喃中对疏水的三辛基氧化膦(TOPO)包覆的CdSe/ZnS量子点进行二次包覆,TCC羧基的去质子化导致形成水溶性量子点。通过透射电子显微镜(TEM)和荧光相关光谱(FCS)对量子点的表面结构进行了表征。TEM图像显示,TCC包覆的量子点单分散,粒径(核壳部分)约为5nm。通过FCS测定TCC包覆的量子点的流体动力学直径为8.9nm,表明量子点表面有机层的厚度约为2nm。这些结果表明,TCC包覆的量子点的表面层形成了由TOPO和TCC分子组成的双层结构。与用巯基乙酸和巯基十一烷酸进行表面修饰的量子点相比,TCC包覆的CdSe/ZnS量子点具有高荧光性(量子产率为0.21)。即使在同一溶液中存在其他过渡金属离子如Cd2+、Zn2+、Co2+、Fe+和Fe3+离子时,TCC包覆的量子点的荧光也能被Cu2+离子有效猝灭。Cu2+离子对荧光猝灭的Stern-Volmer图在Cu2+离子浓度高达30μM时呈线性关系。通过测量对包括Fe2+、Fe3+、Co+、Zn2+、Cd2+在内的具有生物学重要性的过渡金属离子(50μM)的荧光响应,确定了TCC包覆的量子点的离子选择性。TCC包覆的量子点的荧光对其他具有生物学重要性的离子如Na+、K+、Mg2+和Ca2+几乎不敏感,这表明TCC包覆的量子点可作为生物样品的荧光Cu2+离子探针。还基于Langmuir型吸附等温线讨论了Cu2+离子可能的猝灭机制。

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