首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Phase Transitions and Chain Dynamics of Surfactants Intercalated into the Galleries of Naturally Occurring Clay Mineral Magadiite
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Phase Transitions and Chain Dynamics of Surfactants Intercalated into the Galleries of Naturally Occurring Clay Mineral Magadiite

机译:表面活性剂的相变和链动力学插入天然存在的粘土矿辉石中

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摘要

We investigate conformational dynamics and phase transitions of surfactant molecules confined in the layered galleries of the organo-modified, natural polysilicate clay, magadiite. We have shown that our approach to studying this class of materials is capable of delivering detailed information on the molecular mobility of the confined molecules. From the analysis of the measured heteronuclear dipolar couplings, the orientational order parameters of the C?H bonds along the hydrocarbon chain have been determined. Three phases have been observed in the nanocomposite, characterized by distinct dynamical states of the surfactant. At room temperature, restricted mobility of the molecules led to the adoption of an essentially all-trans conformation by the chains. This behavior can be described by a model incorporating small-angle wobbling around the long molecular axes of the chains. Upon heating, dynamic transformation takes place, resulting in a rotator type solid phase where molecules in extended all-trans conformations undergo fast and unrestricted rotation about their respective symmetry axes. The second phase transition is associated with chain melting and the onset of translational dynamics and results in an essentially liquid-crystalline-like state of the organic component. The mobility of the surfactant is one of the key factors facilitating the efficient penetration of macromolecules in the process of preparing of polymer/organoclay nanocomposites. The exploration of dynamic properties of the functionalizing organic layer should provide important input into the improved design of new organic?inorganic hybrid materials.
机译:我们研究了表面活性剂分子的构象动力学和相变,其局限于有机改性天然聚硅酸盐粘土,辉铁矿的层状画廊中。我们已经表明,我们研究此类材料的方法能够提供有关受限分子的分子迁移率的详细信息。通过对测得的异核偶极偶合的分析,确定了沿着烃链的C 1 H键的取向顺序参数。在纳米复合物中已经观察到三相,其特征在于表面活性剂具有不同的动力学状态。在室温下,分子的受限迁移导致链采用基本上全反式构象。此行为可以通过包含围绕链的长分子轴的小角度摆动的模型来描述。在加热时,发生动态转变,从而产生旋转器型固相,其中扩展的全反式构型的分子绕其各自的对称轴进行快速且不受限制的旋转。第二相变与链熔化和平移动力学的开始有关,并导致有机组分的基本上液晶状的状态。表面活性剂的迁移率是在制备聚合物/有机粘土纳米复合材料的过程中促进大分子有效渗透的关键因素之一。对功能化有机层动力学特性的探索应为新型有机-无机杂化材料的改进设计提供重要的投入。

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