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Influence of Counterions on Laurie Acid Vesicles and Theoretical Consideration of Vesicle Stability

机译:抗衡离子对月桂酸囊泡的影响及囊泡稳定性的理论考虑

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The counterions, including inorganic cations, Na~+ and Cs~+, and organic cation, (C2H5)4N~+, influence the phase behavior and self-assembled structures of the lauric acid (LA) in water. Dissolving LA in NaOH, CsOH, and (C2H5)4NOH (tetraethy-lammonium hydroxide, TeAOH) solutions, respectively, we observed that the three systems totally exhibited the same phase behavior, from birefringent L_α phase/precipitates (P) → L_α phase→ L_α phase/L1 (micelles) → L1 The temperature influence on phase behavior was investigated, and with an increase of temperature, we observed that less phase behavior change occurred in the systems of LA/CsOH/H2O and LA/TeAOH/H2O, while the phase behavior of the LA/NaOH/H2O system exhibited an obvious change. Cryogenic transmission electron microscopy (cryo-TEM) images demonstrated that the different microstructures of L_α phase samples in the three systems existed. For the systems of LA/ NaOH/H2O and LA/TeAOH/H2O, uni- and multilamellar vesicles coexist for L_α phase samples, as both the morphology and size of these vesicles are polydisperse. The curvatures of the bilayer membranes of the two systems are considered to vary from positive, zero, and even negative. However, only spherically unilamellar vesicles exist in the system of LA/CsOH/H2O, indicating that the bilayers are more rigid than those in the LA/NaOH/H2O and LA/TeAOH/H2O systems. Through the combination of the Helfrich curvature energy theory and the mass-action model, the effective bending constant K = 0.5 k_BT in the LA/CsOH/ H2O system was obtained, demonstrating that the unilamellar vesicles are stabilized by thermal fluctuations. A primary discussion for the effect of the nature of counterions on the stability and deformation of the vesicles is presented.
机译:抗衡离子包括无机阳离子Na〜+和Cs〜+,以及有机阳离子(C2H5)4N〜+,会影响水中月桂酸(LA)的相行为和自组装结构。将LA分别溶解在NaOH,CsOH和(C2H5)4NOH(四乙基氢氧化铵,TeAOH)溶液中,我们观察到三个系统完全表现出相同的相行为,从双折射L_α相/沉淀(P)→L_α相→ L_α相/ L1(胶束)→L1研究了温度对相行为的影响,并且随着温度的升高,我们观察到LA / CsOH / H2O和LA / TeAOH / H2O系统中发生的相行为变化较少。 LA / NaOH / H2O体系的相行为发生了明显的变化。低温透射电子显微镜(cryo-TEM)图像表明,三个系统中存在L_α相样品的不同显微结构。对于LA / NaOH / H2O和LA / TeAOH / H2O的系统,L_α相样品的单层和多层囊泡共存,因为这些囊泡的形态和大小均是多分散的。认为这两个系统的双层膜的曲率从正值,零值甚至负值变化。但是,LA / CsOH / H2O系统中仅存在球形单层囊泡,这表明双层比LA / NaOH / H2O和LA / TeAOH / H2O系统中的双层更坚硬。通过将Helfrich曲率能量理论和质量作用模型相结合,获得了LA / CsOH / H2O系统中的有效弯曲常数K = 0.5 k_BT,表明单层囊泡因热波动而稳定。初步讨论了抗衡离子的性质对囊泡稳定性和变形的影响。

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