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静水压揭示了双十八烷基二甲基溴化铵和氯化物的双层相行为。

Hydrostatic pressure reveals bilayer phase behavior of dioctadecyldimethylammonium bromide and chloride.

机构信息

Department of Life System, Institute of Technology, and Science, University of Tokushima, 2-1 minamijosanjima-cho, Tokushima 770-8506, Japan.

出版信息

Langmuir. 2011 Mar 1;27(5):1592-8. doi: 10.1021/la104552z. Epub 2011 Jan 25.

Abstract

Bilayer phase transitions of dioctadecyldimethylammonium bromide (2C(18)Br) and chloride (2C(18)Cl) were observed by differential scanning calorimetry and high-pressure light-transmittance measurements. The 2C(18)Br bilayer membrane showed different kinds of transitions depending on preparation methods of samples under atmospheric pressure. Under certain conditions, the 2C(18)Br bilayer underwent three kinds of transitions, the metastable transition from the metastable lamellar crystal (L(c(2))) phase to the metastable lamellar gel (L(β)) phase at 35.4 °C, the metastable main transition from the metastable L(β) phase to the metastable liquid crystalline (L(α)) phase at 44.5 °C, and the stable transition from the stable lamellar crystal (L(c(1))) phase to the stable L(α) phase at 52.8 °C. On the contrary, the 2C(18)Cl bilayer underwent two kinds of transitions, the stable transition from the stable L(c) phase to the stable L(β) phase at 19.7 °C and the stable main transition from the stable L(β) phase to the stable L(α) phase at 39.9 °C. The temperatures of the phase transitions of the 2C(18)Br and 2C(18)Cl bilayers were almost linearly elevated by applying pressure. It was found from the temperature (T)-pressure (p) phase diagram of the 2C(18)Br bilayer that the T-p curves for the main transition and the L(c(1))/L(α) transition intersect at ca. 130 MPa because of the larger slope of the former transition curve. On the other hand, the T-p phase diagram of the 2C(18)Cl bilayer took a simple shape. The thermodynamic properties for the main transition of the 2C(18)Br and 2C(18)Cl bilayers were comparable to each other, whereas those for the L(c(1))/L(α) transition of the 2C(18)Br bilayer showed considerably high values, signifying that the L(c(1)) phase of the 2C(18)Br bilayer is extremely stable. These differences observed in both bilayers are attributable to the difference in interaction between a surfactant and its counterion.

摘要

通过差示扫描量热法和高压光透射测量观察了双十八烷基二甲基溴化铵(2C(18)Br)和氯化物(2C(18)Cl)的双层相转变。在常压下,根据样品的制备方法,2C(18)Br 双层膜表现出不同类型的转变。在某些条件下,2C(18)Br 双层膜经历了三种转变,即从亚稳层状晶(L(c(2)))相到亚稳层状凝胶(L(β))相的亚稳转变,温度为 35.4°C,从亚稳 L(β)相到亚稳向列相(L(α))相的亚稳主转变,温度为 44.5°C,以及从稳定层状晶(L(c(1)))相到稳定 L(α)相的稳定转变,温度为 52.8°C。相反,2C(18)Cl 双层膜经历了两种转变,即从稳定 L(c)相到稳定 L(β)相的稳定转变,温度为 19.7°C,以及从稳定 L(β)相到稳定 L(α)相的稳定主转变,温度为 39.9°C。通过施加压力,2C(18)Br 和 2C(18)Cl 双层膜的相变温度几乎呈线性升高。从 2C(18)Br 双层膜的 T-p 相图中发现,由于前一转变曲线的斜率较大,主转变和 L(c(1))/L(α)转变的 T-p 曲线在约 130 MPa 处相交。另一方面,2C(18)Cl 双层膜的 T-p 相图形状简单。2C(18)Br 和 2C(18)Cl 双层膜的主转变热力学性质彼此相当,而 2C(18)Br 双层膜的 L(c(1))/L(α)转变的热力学性质则表现出相当高的值,表明 2C(18)Br 双层膜的 L(c(1))相非常稳定。这两个双层膜中观察到的这些差异归因于表面活性剂与其反离子之间相互作用的差异。

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