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氯化癸铵溶致液晶相中的集体和局部分子动力学:1H和2H NMR研究

Collective and local molecular dynamics in the lyotropic mesophases of decylammonium chloride: 1H and 2H NMR study.

作者信息

Wachowicz Marcin, Jurga Stefan, Vilfan Marija

机构信息

Institute of Physics, A. Mickiewicz University, Umultowska 85, 61-614 Poznań, Poland.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Sep;70(3 Pt 1):031701. doi: 10.1103/PhysRevE.70.031701. Epub 2004 Sep 14.

DOI:10.1103/PhysRevE.70.031701
PMID:15524537
Abstract

The collective and individual dynamics of decylammonium chloride (DACl) molecules in water environment were investigated as a function of surfactant concentration and temperature. In the presence of water the DACl forms a variety of self-assembled structures, ranging from isotropic micellar systems to lyotropic liquid crystalline phases of hexagonal, nematic, and lamellar types. In order to characterize the complex molecular dynamics that occur in the DACl-water system, we applied 1H and 2H NMR techniques that cover the whole frequency range between 1 kHz and 30 MHz. The slow molecular dynamics were studied by 1H NMR fast-field-cycling T1 measurements and pulse-frequency dependence of 2H NMR transverse relaxation time, performed by means of the Carr-Purcell-Meiboom-Gill sequence. We detected a well-expressed contribution of order director fluctuations, i.e., layer undulations, with characteristic omega(-1)(L) frequency dependence of T(-1)(1) in the lamellar phase. Its presence indicates a relatively weak impact of interactions between neighboring DACl layers. The frequency dependence of proton T(-1)(1) in the hexagonal phase exhibits a different type of frequency dispersion, T(-1)(1) approximately omega(-1.32)(L). The increase in the exponent is explained with the quasi-one-dimensional character of fluctuations in elongated cylinders. Further, the T1 and T2 relaxation times of deuterons selectively attached to the C2 and C7 segments of the hydrocarbon chains of DACl were measured at a Larmor frequency of 30.7 MHz, providing quantitative information about local molecular dynamics.

摘要

研究了水环境中癸基氯化铵(DACl)分子的集体和个体动力学随表面活性剂浓度和温度的变化。在有水存在的情况下,DACl形成各种自组装结构,从各向同性胶束体系到六方、向列和层状类型的溶致液晶相。为了表征DACl-水体系中发生的复杂分子动力学,我们应用了覆盖1 kHz至30 MHz整个频率范围的1H和2H NMR技术。通过1H NMR快速场循环T1测量和借助Carr-Purcell-Meiboom-Gill序列进行的2H NMR横向弛豫时间的脉冲频率依赖性研究了慢分子动力学。我们在层状相中检测到有序指向矢波动(即层起伏)的明显贡献,其T1-1具有特征性的ω-1(L)频率依赖性。它的存在表明相邻DACl层之间相互作用的影响相对较弱。六方相中质子T1-1的频率依赖性表现出不同类型的频率色散,T1-1约为ω-1.32(L)。指数的增加可以用细长圆柱体中波动的准一维特征来解释。此外,在30.7 MHz的拉莫尔频率下测量了选择性连接到DACl烃链C2和C7段的氘核的T1和T2弛豫时间,提供了有关局部分子动力学的定量信息。

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