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Fluorometric detection of iodine by MIL-53(Al)-TDC

机译:MIL-53(AL)-TDC含碘碘的荧光检测

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摘要

The fluorescent properties of MIL-53(Al)-TDC are drastically changed due to the presence of iodine, even in small quantities, as a result of an energy transfer process from the host material (MIL-53(Al)-TDC) to the guest molecule (I-2). While MIL-53(Al)-TDC's emission spectrum shows a weak and broad band, after I-2 adsorption, it exhibits well-resolved and long-lasting emission lines, which could be exploited for iodine detection. Density Functional Theory periodical calculations demonstrated that in the most stable MIL-53(Al)-TDC center dot center dot center dot I-2 configuration, the I-2 molecule is bonded mainly by an O-H center dot center dot center dot I hydrogen bond. The QTAIM showed that other non-covalent interactions also provided stability to MIL-53(Al)-TDC center dot center dot center dot I-2. The electrostatic potential analysis indicated that the I-2 molecule adsorption occurs by a combination of specific interactions with a strong electrostatic contribution and weak interactions. These results postulate fluorescent MIL-53(Al)-TDC as an efficient I-2 detector (potentially for radioactive I-2), using a simple fluorimetric test.
机译:由于来自主体材料的能量转移过程(MIL-53(Al)-TDC),MIL-53(Al)-Tdc的荧光特性也由于碘存在而大幅改变,即使是少量的碘客人分子(I-2)。虽然MIL-53(AL)-TDC的排放光谱显示出弱和宽带,但在I-2吸附后,它表现出良好的解析和持久的排放线,可以利用碘检测。密度函数理论期刊计算证明,在最稳定的MIL-53(AL)-TDC中心点中心点中心点I-2配置中,I-2分子主要由OH中心点中心点中心点I氢键键合。 Qtaim表明,其他非共价相互作用还为MIL-53(AL)-TDC中心点中心点I-2提供了稳定性。静电电位分析表明I-2分子吸附通过与强静电贡献和弱相互作用的特定相互作用的组合进行。这些结果假设荧光MIL-53(Al)-TDC作为一种有效的I-2检测器(可能是放射性I-2),使用简单的荧光试验。

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