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正电子湮没寿命谱(PALS)作为一种用于纳米结构自组装两亲体系的表征技术。

Positron annihilation lifetime spectroscopy (PALS) as a characterization technique for nanostructured self-assembled amphiphile systems.

作者信息

Dong Aurelia W, Pascual-Izarra Carlos, Pas Steven J, Hill Anita J, Boyd Ben J, Drummond Calum J

机构信息

CSIRO Molecular and Health Technologies, Clayton, VIC 3169, Australia.

出版信息

J Phys Chem B. 2009 Jan 8;113(1):84-91. doi: 10.1021/jp805280r.

Abstract

Positron annihilation lifetime spectroscopy (PALS) has potential as a novel rapid characterization method for self-assembly amphiphile systems; however, a lack of systematic correlation of PALS parameters with structural attributes has limited its more widespread application. In this study, using the well-characterized phytantriol/water and the phytantriol/vitamin E acetate/water self-assembly amphiphile systems, the impact of systematic structural changes controlled by changes in composition and temperature on PALS parameters has been studied. The PALS parameters (orthopositronium (oPs) lifetime and intensity signatures) were shown to be sensitive to the molecular packing and mobility of the self-assembled lipid molecules in various lyotropic liquid crystalline phases, enabling differentiation between liquid crystalline structures. The oPs lifetime, related to the molecular packing and mobility, is correlated with rheological properties of the individual mesophases. The oPs lifetime links the lipid chain packing and mobility in the various mesophases to resultant macroscopic properties, such as permeability, which is critical for the use of these mesophase structures as diffusion-controlled release matrices for active liposoluble compounds.

摘要

正电子湮没寿命谱(PALS)有潜力成为一种用于自组装两亲体系的新型快速表征方法;然而,PALS参数与结构属性缺乏系统的相关性限制了其更广泛的应用。在本研究中,使用表征充分的植烷三醇/水和植烷三醇/维生素E醋酸酯/水自组装两亲体系,研究了由组成和温度变化控制的系统结构变化对PALS参数的影响。结果表明,PALS参数(正电子素(oPs)寿命和强度特征)对各种溶致液晶相中自组装脂质分子的分子堆积和流动性敏感,能够区分液晶结构。与分子堆积和流动性相关的oPs寿命与各个中间相的流变性质相关。oPs寿命将各种中间相中的脂质链堆积和流动性与所得宏观性质(如渗透性)联系起来,这对于将这些中间相结构用作活性脂溶性化合物的扩散控制释放基质至关重要。

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