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Tuning and enhancing enantioselective quenching of calixarene hosts by chiral guest Amines

机译:通过手性客体胺调节和增强杯芳烃主体的对映选择性猝灭

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The synthesis of a propranolol amide derivative of p-allylcalix[4]arene is described, which has been designed to behave as a molecular sensor capable of distinguishing chiral amines on the basis of their shape and chirality. This molecule can discriminate between the enantiomers of phenylalaninol through the quenching of the fluorescence emission in methanol in contrast to an (S)-dinaphthylprolinol calix[4]arene derivative, which can discriminate between the enantiomers of phenylglycinol, but not phenylalaninol. The separation between the naphthyl fluorophores and the hydrogen-bonding sites within the chiral cavity can be tuned to recognize guest amines with similar separation between aryl groups and hydrogen-bonding sites. The formation of metal ion complexes of the p-allylcalix[4]arene propranolol amide derivative is shown to induce a more regular and rigid cone conformation in the calix[4]arene macrocycle, which generates a significant enhancement in the observed enantiomeric discrimination. [References: 17]
机译:描述了对-烯丙基杯[4]芳烃的普萘洛尔酰胺衍生物的合成,其被设计为充当能够根据其形状和手性区分手性胺的分子传感器。与(S)-二萘基脯氨醇杯杯[4]芳烃衍生物相反,该分子可以通过在甲醇中猝灭荧光来区分苯丙氨醇的对映异构体,后者可以区分苯甘醇的对映异构体,而不是苯丙氨醇。可以调整萘基荧光团与手性腔内氢键位之间的间隔,以识别客体胺,其中芳基和氢键位之间的间隔相似。对-烯丙基杯[4]芳烃普萘洛尔酰胺衍生物的金属离子络合物的形成显示出在杯[4]芳烃大环中诱导更规则和刚性的锥构象,这在观察到的对映体鉴别中产生了显着增强。 [参考:17]

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