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首页> 外文期刊>RSC Advances >Insertion behavior of imidazolium and pyrrolidinium based ionic liquids into α and β-cyclodextrins: mechanism and factors leading to host–guest inclusion complexes
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Insertion behavior of imidazolium and pyrrolidinium based ionic liquids into α and β-cyclodextrins: mechanism and factors leading to host–guest inclusion complexes

机译:基于咪唑鎓和吡咯烷基离子液体进入α和β-环糊精的插入行为:导致寄主访客包含复合物的机制和因素

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摘要

Host–guest inclusion complexes formed from two ionic liquids (namely, 1-butyl-3-methylimidazolium chloride and 1-butyl-1-methylpyrrolidinium chloride) with α and β-cyclodextrin have been investigated by physicochemical and spectroscopic methods as stabilizers, carriers and regulatory releasers of the guest molecules. ~(1) H NMR, 2D ROESY NMR, FT-IR and ESI MS studies confirm the inclusion phenomenon, whereas surface tension and conductivity studies indicate a 1?:?1 stoichiometry of the inclusion complexes. The interactions of cyclodextrin with the two named ionic liquids were characterized by density, viscosity and refractive index measurements, while the binding constants have been evaluated using a non-linear programme by the conductivity method, indicating a higher degree of encapsulation in the case of α-cyclodextrin than that in β-cyclodextrin. The formation of the inclusion complexes was elucidated by hydrophobic effects, structural effects, electrostatic forces and H-bonding interactions.
机译:通过物理化学和光谱法作为稳定剂,载体和监管释放客体分子。 〜(1)H NMR,2D Roesy NMR,FT-IR和ESI MS研究证实了包含现象,而表面张力和电导率研究表明了1?:α:1个化学计量的包合物。通过密度,粘度和折射率测量,具有两个命名离子液体的环糊精与两个命名离子液体的相互作用,而使用导电方法使用非线性程序评估结合常数,表明在α的情况下较高的封装程度-cyclodextrin比β-环糊精。通过疏水效应,结构效应,静电力和H键合相互作用阐明了包合物的形成。

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