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首页> 外文期刊>Molecules >Factors Affecting the Formation of 2:1 Host:Guest Inclusion Complexes of 2-[(R-Phenyl)amine]-1,4-naphthalenediones (PAN) in β- and γ-Cyclodextrins
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Factors Affecting the Formation of 2:1 Host:Guest Inclusion Complexes of 2-[(R-Phenyl)amine]-1,4-naphthalenediones (PAN) in β- and γ-Cyclodextrins

机译:影响β-和γ-环糊精中2-[((R-苯基)胺] -1,4-萘二酮(PAN)2:1宿主:客体包合物的形成的因素

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摘要

The molecular hosts cyclodextrins form inclusion complexes with a wide variety of guests, resulting in complexes with various host:guest stoichiometries. In the case of a series of 19 1,4-naphthoquinolines as guests with either β- or γ-cyclodextrin studied using electrospray mass spectroscopy, in most cases only 1:1 complexes were observed, with 2:1 host:guest complexes observed in just 6 out of 38 host:guest combinations. It is shown that these higher-order complexes were observed only in the case of small (or no) electronically withdrawing substituents, and were much less likely in the case of the larger γ-cyclodextrin host. The size and electronic properties of the substituents involved shows that both steric and electronic factors must be taken into account in predicting which cyclodextrin host:guest stoichiometries will be stable enough to form (or once formed, be robust enough to be observed in the ESI-MS experiments). It is clear that the prediction of host-guest stoichiometry for a specific host-guest pair is complicated, and involves a subtle interplay of both electronic and steric factors. However, there are definite trends, which can be used to help predict host:guest stoichiometry for a given host-guest pair.
机译:分子主体环糊精与多种客体形成包合物,从而形成具有多种主体:客体化学计量比的复合物。在使用电喷雾质谱法研究了一系列19个1,4-萘喹啉与β-或γ-环糊精的客体的情况下,在大多数情况下,仅观察到1:1的配合物,其中观察到2:1的host:guest配合物在38位主持人:访客组合中,只有6位。结果表明,这些高阶配合物仅在小的(或没有)电子吸取取代基的情况下才观察到,而在较大的γ-环糊精主体的情况下则不太可能观察到。所涉及的取代基的大小和电子性质表明,在预测哪种环糊精主体:客体的化学计量比将足以形成(或一旦形成,足以在ESI中观察到的鲁棒性)时,必须同时考虑空间和电子因素。 MS实验)。显然,对特定主客体对的主客体化学计量的预测是复杂的,并且涉及电子和空间因素的微妙相互作用。但是,存在一定的趋势,可以用来帮助预测给定的主客体对的客体:客体化学计量。

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