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客体疏水性对低聚物/α-环糊精包合物水吸附行为的影响。

Effect of guest hydrophobicity on water sorption behavior of oligomer/alpha-cyclodextrin inclusion complexes.

作者信息

Hunt Marcus A, Tonelli Alan E, Balik C Maurice

机构信息

Fiber and Polymer Science Program, Campus Box 8301, North Carolina State University, Raleigh, North Carolina 27695-8301, USA.

出版信息

J Phys Chem B. 2007 Apr 19;111(15):3853-8. doi: 10.1021/jp070145t. Epub 2007 Mar 29.

Abstract

Cyclomaltohexaose (alpha-cyclodextrin, alpha-CD) can form inclusion complexes (ICs) with polymer molecules in the columnar crystal structure in which alpha-CD molecules stack to form a molecular tube. Complementary water vapor sorption and wide-angle X-ray diffractomery (WAXD) were performed on oligomer/alpha-CD ICs to determine their structures and stabilities. To discern the effect of guest molecule hydrophobicity on water adsorption isotherms, polyethylene glycol (PEG, MW = 600 g/mol) and hexatriacontane (HTC) guests were used. Sorption isotherms for PEG/alpha-CD IC are similar to those obtained for pure alpha-CD and PEG, suggesting the presence of dethreaded PEG in the sample. WAXD collected before and after water vapor sorption of PEG/alpha-CD IC indicated a partial conversion from columnar to cage crystal structure, the thermodynamically preferred structure for pure alpha-CD, due to dethreading of PEG. This behavior does not occur for HTC/alpha-CD IC. Sorption isotherms collected at 20, 30, 40, and 50 degrees C allowed the calculation of the isosteric heats of adsorption and the integral entropies of adsorbed water which are characterized by minima that indicate the monolayer concentration of water in the ICs.

摘要

环麦芽六糖(α-环糊精,α-CD)可与呈柱状晶体结构的聚合物分子形成包合物(ICs),其中α-CD分子堆叠形成分子管。对低聚物/α-CD包合物进行了互补水蒸气吸附和广角X射线衍射(WAXD)分析,以确定其结构和稳定性。为了辨别客体分子疏水性对水吸附等温线的影响,使用了聚乙二醇(PEG,分子量 = 600 g/mol)和三十六烷(HTC)作为客体。PEG/α-CD包合物的吸附等温线与纯α-CD和PEG的吸附等温线相似,表明样品中存在解络合的PEG。PEG/α-CD包合物水蒸气吸附前后收集的WAXD表明,由于PEG的解络合,柱状晶体结构部分转变为笼状晶体结构,这是纯α-CD的热力学优选结构。HTC/α-CD包合物不会出现这种行为。在20、30、40和50摄氏度下收集的吸附等温线使得能够计算吸附的等量热和吸附水的积分熵,其特征在于最小值,该最小值表明包合物中水的单层浓度。

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