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首页> 外文期刊>Supramolecular chemistry >Cyclohexyl-diimine capped lower rim 1,3-di-derivatized calix[4]arene conjugate as sensor for Al3+ by spectroscopy, microscopy, titration calorimetry and DFT computations
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Cyclohexyl-diimine capped lower rim 1,3-di-derivatized calix[4]arene conjugate as sensor for Al3+ by spectroscopy, microscopy, titration calorimetry and DFT computations

机译:环己基二亚胺通过光谱,显微镜,滴定热量和DFT计算为Al3 +作为传感器的下边缘1,3-Di衍生的胶片[4]芳烃缀合物

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摘要

A cyclohexane-trans-1,2-diimine capped conjugate of 1,3-calix[4]arene (L) has been synthesized and characterized using different analytical and spectral techniques. L has been shown to be sensitive toward Al3+ by exhibiting similar to 45-fold enhancement in its emission intensity at 445nm upon complexation. All the other 15 metal ions showed almost no or minimal change in the fluorescence intensity of the L supporting that none of those 15 ions is sensed by L. The complexation between L and Al3+ has been further confirmed by absorption spectroscopy, isothermal titration calorimetry and ESI MS. The isotopic peak pattern of the ESI MS peak clearly confirmed the presence of aluminum in the 1:1 complex formed. The need for the flexible cap moiety for bringing selectivity to Al3+ was proven by comparing the titration studies with the corresponding control molecules. The sensing of Al3+ by L in the solid powder was demonstrated by fluorescence microscopy. The supramolecular behavior of L changes from simple spherical type morphology in L to an aggregated micro pots and fibers upon Al3+ binding. The DFT computational study yielded a distorted tetrahedral complex of the dianionic receptor resulting in AlN2O2 core.
机译:已经合成了1,3-杯[4]芳烃(L)的环己烷-RINS-1,2-二亚胺封装缀合物,并使用不同的分析和光谱技术表征。 L已被显示在络合后445nm的发射强度类似于45倍的45倍的45倍的增强来敏感。所有其他15金属离子显示出L的荧光强度的几乎没有或最小的变化,其中L的荧光强度是通过L和Al3 +之间的粘合剂通过吸收光谱,等温滴定热量测定和ESI进一步证实了L和Al3 +之间的络合物多发性硬化症。 ESI MS峰的同位素峰图案清楚地证实了形成的1:1复合物中铝的存在。通过将滴定研究与相应的对照分子进行比较,证明了对柔性帽部分用于为AL3 +带来选择性的需求。通过荧光显微镜证明了在固体粉末中L1的Al3 +的感测。 L的S超分子行为从L中的简单球型形态变化到Al3 +结合的聚集微盆和纤维。 DFT计算研究产生了Dianionic受体的扭曲四面体络合物,导致Aln2O2核心。

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