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十四烷基铵链在膨胀型高电荷云母(钠云母-3和钠云母-2)上的自组装:烷基铵浓度和云母层电荷的影响

Self-Assembling of Tetradecylammonium Chain on Swelling High Charge Micas (Na-Mica-3 and Na-Mica-2): Effect of Alkylammonium Concentration and Mica Layer Charge.

作者信息

Pazos M Carolina, Cota Agustín, Osuna Francisco J, Pavón Esperanza, Alba María D

机构信息

†Escuela de Ciencias Químicas, Universidad Pedagógica y Tecnológica de Colombia UPTC, Avenida Central del Norte, Vía Paipa Tunja, 39-115 Boyacá, Colombia.

‡Laboratorio de Rayos-X, Centro de Investigación, Tecnología e Innovación de la Universidad de Sevilla (CITIUS), Universidad de Sevilla, Avenida Reina Mercedes 4, 41012 Sevilla, Spain.

出版信息

Langmuir. 2015 Apr 21;31(15):4394-401. doi: 10.1021/acs.langmuir.5b00224. Epub 2015 Apr 7.

Abstract

A family of tetradecylammonium micas is synthesized using synthetic swelling micas with high layer charge (Na(n)Si(8-n)Al(n)Mg6F4O20·XH2O, where n = 2 and 3) exchanged with tetradecylammonium cations. The molecular arrangement of the surfactant is elucidated on the basis of XRD patterns and DTA. The ordering conformation of the surfactant molecules into the interlayer space of micas is investigated by IR/FT, (13)C, (27)Al, and (29)Si MAS NMR. The structural arrangement of the tetradecylammonium cation in the interlayer space of high-charge micas is more sensitive to the effect of the mica layer charge at high concentration. The surfactant arrangement is found to follow the bilayer-paraffin model for all values of layer charge and surfactant concentration. However, at initial concentration below the mica CEC, a lateral monolayer is also observed. The amount of ordered conformation all-trans is directly proportional to the layer charge and surfactant concentration.

摘要

使用具有高层电荷的合成膨胀云母(Na(n)Si(8 - n)Al(n)Mg6F4O20·XH2O,其中n = 2和3)与十四烷基铵阳离子进行交换,合成了十四烷基铵云母家族。基于X射线衍射图谱和差示热分析阐明了表面活性剂的分子排列。通过红外/傅里叶变换、(13)C、(27)Al和(29)Si固体高分辨核磁共振研究了表面活性剂分子在云母层间空间中的有序构象。在高浓度下,高电荷云母层间空间中十四烷基铵阳离子的结构排列对云母层电荷的影响更为敏感。发现对于所有层电荷和表面活性剂浓度值,表面活性剂排列遵循双层石蜡模型。然而,在初始浓度低于云母阳离子交换容量时,也观察到横向单层。全反式有序构象的量与层电荷和表面活性剂浓度成正比。

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