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Thermodynamic study of functionalized calix[n]arene and resorcinol[n]arene monolayers spreaded at an aqueous pendant drop

机译:功能化的杯芳烃[n]芳烃和间苯二酚[n]芳烃单层分散在水性悬垂液滴上的热力学研究

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摘要

The behavior of insoluble calix[n]arene and resorcinol[n]arene derivatives monolayers were studied through the use of a constant surface Langmuir balance based on Axisymmetric Drop Shape Analysis (ADSA). In each case, a stable monolayer was obtained and different transitions (induced for lateral compression) could be identified. Thermodynamic parameters were computed through two dimensional Clausius-Clayperon equations and used to valuate the monolayer stability. A noticeable reduction of thermodynamic parameters occurred at highly tested temperatures (328 and 338 K) for those compounds that had hydrocarbon tails or benzene rings attached to one side of macrocyclic rim. Such fact was related to a monolayer rearrangement where the macrocyclic ring changed from a parallel to a perpendicular orientation. In this orientation the hydrophobic interactions between hydrocarbon chains and benzene rings were maximized. At highly temperature, where vigorous molecular motion existed, those interactions were superior to the stabilization effect through hydrogen bond.
机译:通过使用基于轴对称液滴形状分析(ADSA)的恒定表面Langmuir平衡,研究了不溶的杯芳烃[n]芳烃和间苯二酚[n]芳烃衍生物单层的行为。在每种情况下,均获得了稳定的单分子层,并且可以识别出不同的跃迁(诱导为横向压缩)。通过二维克劳修斯-克莱珀隆方程计算热力学参数,并将其用于评估单层稳定性。对于那些在大环轮缘的一侧连接了烃尾部或苯环的化合物,在经过严格测试的温度(328和338 K)下,热力学参数明显降低。该事实与单分子重排有关,其中大环从平行取向改变为垂直取向。在这种取向下,烃链和苯环之间的疏水相互作用最大化。在高温下,存在剧烈的分子运动,这些相互作用优于通过氢键的稳定作用。

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