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Highly selective binding of methyl orange dye by cationic water-soluble pillar[5]arenes

机译:阳离子水溶性柱[5]芳烃对甲基橙染料的高选择性结合

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摘要

A new water-soluble pitlar[5]arene with an amide fragment and triethylammonium groups was synthesized by our original method of aminolysis of the ester groups. Using UV-spectroscopy, it is shown that cationic pillar[5]arenes are able to selectively form 1:1 complexes with some hydrophobic anions: the guests with bulky uncharged or negatively charged substituents hindering entry into the macrocycle cavity. Highly selective binding of the most lipophilic guest, methyl orange dye, in the form of organic anion salts by positively charged water-soluble pillar[5]arenes was detected. In the case of the azo dye the appropriate K_(ass) values were 10-100-fold higher than those calculated for the other sulfonic acid derivatives studied. The 2D NMR NOESY ~1H-~1H spectroscopy confirms the formation of the inclusion complex: negative charge sulfonate head is outside the cavity of pillar[5]arenes and the hydrophobic fragment of the guest is located in the cavity.
机译:通过我们原有的酯基氨基解离方法,合成了一种具有酰胺片段和三乙铵基团的水溶性吡咯[5]芳烃。使用紫外光谱法表明,阳离子柱[5]芳烃能够与一些疏水性阴离子选择性地形成1:1配合物:带有大的不带电或带负电的取代基的客体阻碍了其进入大环腔。检测到最亲脂性的客体,甲基橙染料,以有机阴离子盐的形式,被带正电的水溶性柱[5]芳烃高度选择性地结合。在偶氮染料的情况下,合适的K_(ass)值比对所研究的其他磺酸衍生物计算的K_(ass)值高10-100倍。 2D NMR NOESY〜1H-〜1H光谱证实了包合物的形成:负电荷的磺酸盐头位于柱[5]芳烃的腔体外部,客体的疏水片段位于腔体中。

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  • 来源
    《Organic & biomolecular chemistry 》 |2016年第18期| 4233-4238| 共6页
  • 作者单位

    Kazan Federal University, A.M. Butlerov Chemical Institute, 420008, Kremlevskaya Street, 18, Kazan, Russian Federation;

    Kazan Federal University, A.M. Butlerov Chemical Institute, 420008, Kremlevskaya Street, 18, Kazan, Russian Federation;

    Kazan Federal University, A.M. Butlerov Chemical Institute, 420008, Kremlevskaya Street, 18, Kazan, Russian Federation;

    Kazan Federal University, A.M. Butlerov Chemical Institute, 420008, Kremlevskaya Street, 18, Kazan, Russian Federation;

    Kazan Federal University, A.M. Butlerov Chemical Institute, 420008, Kremlevskaya Street, 18, Kazan, Russian Federation;

    Kazan Federal University, A.M. Butlerov Chemical Institute, 420008, Kremlevskaya Street, 18, Kazan, Russian Federation;

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