首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Construction of lanthanide luminescent molecular-based hybrid material using modified functional bridge chemical bonded with silica
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Construction of lanthanide luminescent molecular-based hybrid material using modified functional bridge chemical bonded with silica

机译:改性功能桥与硅化学键结合制备镧系发光分子基杂化材料

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The study focuses on the syntheses of modified chloronictinic acid by (3-aminopropyl)triethoxysilane and the preparation of their corresponding organic-inorganic molecular-based hybrid material with the two components equipped with covalent bonds.The bridging unit is a derivative of 2-chloronictinic acid (CINIC-Si) which is utilized to coordinate to Tb~(3+) or Eu~(3+) (abbreviated as RE~(3+)) and further introduced into silica matrices by Si-O bonds after hydrolysis and polycondensation processes.Ultraviolet absorption,phosphorescence spectra,and fluorescence spectra were applied to characterize the photophysical properties of the obtained hybrid material and the above spectroscopic data present that the triplet energy of modified chloronictinic acid efficiently initiates the antenna effect and matches with the emissive energy level of RE~(3+).Accordingly,the intramolecular energy transfer process completed within these molecular-based hybrids and strong green or red emissions of RE~(3+) have been obtained.
机译:该研究的重点是由(3-氨基丙基)三乙氧基硅烷合成改性的氯烟酸,以及制备相应的具有两个共价键的有机-无机分子基杂化材料。桥接单元是2-氯烟碱的衍生物。酸(CINIC-Si),用于与Tb〜(3+)或Eu〜(3+)配位(缩写为RE〜(3+)),并在水解和缩聚后通过Si-O键进一步引入二氧化硅基质利用紫外吸收,磷光光谱和荧光光谱表征了所得杂化材料的光物理性质,以上光谱数据表明,改性氯氰酸的三重态能量有效地引发了天线效应,并与发射能级相匹配。 RE〜(3+)。因此,这些分子基杂化物完成了分子内能量转移过程,并且RE〜(3 +)已获得。

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