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表面化学纯的N-环烷基醛糖酰胺在气/水界面的吸附行为。

Adsorption behavior of surface chemically pure N-cycloalkylaldonamides at the air/water interface.

作者信息

Piłakowska-Pietras Dorota, Lunkenheimer Klaus, Piasecki Andrzej, Pietras Maciej

机构信息

Institute of Organic and Polymer Technology, Wrocław University of Technology, 50-370 Wrocław, Poland.

出版信息

Langmuir. 2005 Apr 26;21(9):4016-23. doi: 10.1021/la047112e.

Abstract

Equilibrium surface tension (sigma(e)) and electric surface potential (DeltaV(e)) versus concentration isotherms of the homologous series of N-cycloalkylaldonamides synthesized from cycloalkylamines (from cyclopentyl- to cyclododecylamine) and D-glucono-1,5-lactone (c-C(n)GA) or D-glucoheptono-1,4-lactone (c-C(n)GHA) (c-n(C) = 5-12) were investigated at the air/water interface. The measurements were performed with aqueous, surface chemically pure surfactant solutions. Equilibrium surface tension vs concentration isotherms were evaluated to get the adsorption parameters, i.e., standard free energy of adsorption, DeltaG degrees (ads), saturation surface concentration, Gamma(infinity), minimum surface area demand per molecule adsorbed, A(min), and interaction parameter, H(s). Increasing the size of the cycloalkyl moiety leads to a significant increase of the minimum surface area demand per molecule adsorbed. This fact, together with a decrease of the intermolecular interaction parameter suggests that the introduction of a more bulky cycloalkyl ring (c-n(C) = 7 and 8) causes an attenuation of the hydrogen-bond network. This goes in line with the exceptional finding that the higher homologues revealed improved solubility in water. In addition, surface tension investigations suggest occurrence of a phase transition for the N-cyclooctylaldonamides at relatively small surface coverage. This observation is well supported by the surface potential measurements, for which the effect of possible changes in the molecules' surface orientation is even more pronounced. Moreover, the concentration intervals of N-cyclooctylaldonamide in which the change in orientation is observed for either the surface tension or the surface potential isotherms are in very good agreement.

摘要

研究了由环烷基胺(从环戊胺到环十二胺)与D-葡萄糖酸-1,5-内酯(c-C(n)GA)或D-葡萄糖庚酸-1,4-内酯(c-C(n)GHA)(c-n(C)=5-12)合成的N-环烷基醛糖酰胺同系物在空气/水界面的平衡表面张力(σ(e))和电表面电位(ΔV(e))与浓度等温线。测量是在表面化学纯的水性表面活性剂溶液中进行的。对平衡表面张力与浓度等温线进行评估以获得吸附参数,即吸附的标准自由能ΔG°(ads)、饱和表面浓度Γ(∞)、每个吸附分子的最小表面积需求A(min)和相互作用参数H(s)。环烷基部分尺寸的增加导致每个吸附分子的最小表面积需求显著增加。这一事实,连同分子间相互作用参数的降低表明,引入更大的环烷基环(c-n(C)=7和8)会导致氢键网络的减弱。这与更高同系物在水中溶解度提高这一特殊发现一致。此外,表面张力研究表明N-环辛基醛糖酰胺在相对较小的表面覆盖率下会发生相变。这一观察结果得到了表面电位测量的有力支持,对于表面电位测量,分子表面取向可能变化的影响更为明显。此外,在表面张力或表面电位等温线中观察到取向变化的N-环辛基醛糖酰胺的浓度区间非常吻合。

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