首页> 外文期刊>The Journal of Chemical Thermodynamics >Testing the effect of the cavity size and the number of molecular substitutions in host-guest complexes formed by 2-hydroxypropyl-cyclodextrins and n-octyl-β-d-glucopyranoside
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Testing the effect of the cavity size and the number of molecular substitutions in host-guest complexes formed by 2-hydroxypropyl-cyclodextrins and n-octyl-β-d-glucopyranoside

机译:测试空腔尺寸和2-羟丙基-环糊精与正辛基-β-d-吡喃葡萄糖苷形成的主体-客体复合物中分子取代数量的影响

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摘要

The thermodynamic characterization of host-guest complex formation processes based on modified cyclodextrins (CDs) presents several difficulties that are absent when using native CDs. They are mainly due to the relatively wide distribution of the degree of molecular substitution and also to the indeterminacy in the location of the modified groups. A more common trouble would arise from the coexistence of coupled processes, such as CD-surfactant complexation and surfactant demicellization. In the present work a reasonable approach based on the analysis of isothermal titration calorimetric measurements is employed to assess the effect of the number of molecular substitutions as well as of the CD cavity size in supra-molecular complexes formed by 2-hydroxypropyl-CDs and n-octyl-β-d-glucopyranoside. The employed method considers both first- (1:1) and second-order (1:2 and 2:1) stoichiometries. The results were significantly different from those previously observed for native CDs. The substituted groups increase entropically the stability of 1:1 species based on α-CD, while compete with the surfactant for the CD cavity in the case of 1:1 and 1:2 species based on β- and γ-CD, respectively. Also, the modified β-CD seems to enhance the formation of non-inclusion second-order complexes.
机译:基于修饰的环糊精(CD)的宿主-客体复合物形成过程的热力学表征呈现出使用天然CD时不存在的一些困难。它们主要是由于分子取代度的分布相对较宽,也归因于修饰基团的位置不确定。耦合过程的共存将带来更常见的麻烦,例如CD表面活性剂的络合和表面活性剂的脱细胞作用。在本工作中,采用了一种基于等温滴定量热分析的合理方法来评估2-羟丙基-CD和n形成的超分子复合物中分子取代数量以及CD腔尺寸的影响。 -辛基-β-d-吡喃葡萄糖苷。所采用的方法同时考虑了第一(1:1)和第二(1:2和2:1)化学计量。结果明显不同于以前对本地CD观察到的结果。取代基在熵上增加了基于α-CD的1:1物种的稳定性,而在基于β-和γ-CD的1:1和1:2物种的情况下,与表面活性剂竞争CD腔。而且,修饰的β-CD似乎增强了非包合的二级复合物的形成。

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