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Hybrid Langmuir-Blodgett monolayers containing clay minerals: effect of clay concentration and surface charge density on the film formation

机译:含粘土矿物的混合Langmuir-Blodgett单层膜:粘土浓度和表面电荷密度对成膜的影响

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To control the properties of hybrid organo-clay films prepared by the Langmuir-Blodgett (LB) method, the film formation mechanism should be understood. This work aimed to understand what occurs at the air - water interface after the spreading of cationic surfactants (octadecyl rhodamine B, 3,3'-dioctadecyl oxacarbocyanine) on aqueous dispersions of smectite clay minerals ( saponite, montmorillonite, hectorite, laponite), resulting in hybrid organo-clay films. Information on the amount of surfactant molecules and clay particles in the hybrid films was obtained with surface pressure versus molecular area isotherms, attenuated total reflection infrared spectroscopy, ultraviolet-visible spectroscopy and atomic force microscopy. X-ray reflectivity measurements indicated that the surfactant molecules had adsorbed on only one side of the clay mineral lamella. With increasing clay concentration of the dispersion, the isotherms shifted to a lower lift-off area, a minimum lift-off area (MLA) was reached and then the lift-off area increased again. Films made at lower than the MLA clay concentration consisted of two phases: an organic phase and a hybrid organo-clay phase. Films made at the MLA clay concentration consisted of dense monolayers of the surfactant molecules and single clay mineral lamellae. The density of the surfactant molecules was highly correlated with the surface charge density of the clay minerals. These films had low water content. Films made at higher than the MLA clay concentration contained less surfactant, aggregates of the clay mineral particles, residual Na+ ions and water. With the clay concentration of the dispersion and the surface charge density of the clay mineral, the properties of hybrid organo-clay LB films can be adjusted.
机译:为了控制通过Langmuir-Blodgett(LB)方法制备的杂化有机粘土膜的性能,应了解其成膜机理。这项工作旨在了解在蒙脱石粘土矿物(皂石,蒙脱土,锂蒙脱石,锂皂石)的水分散体上分散了阳离子表面活性剂(十八烷基若丹明B,3,3'-二十八烷基氧杂碳菁花青素)后在空气-水界面处发生了什么在混合有机粘土膜中。通过表面压力与分子面积等温线,衰减全反射红外光谱,紫外可见光谱和原子力显微镜,获得了杂化膜中表面活性剂分子和粘土颗粒数量的信息。 X射线反射率测量表明表面活性剂分子仅吸附在粘土矿物薄片的一侧。随着分散液中粘土浓度的增加,等温线移至较低的提起面积,达到最小提起面积(MLA),然后提起面积再次增加。在低于MLA粘土浓度的条件下制成的薄膜由两相组成:有机相和杂化有机粘土相。在MLA粘土浓度下制成的薄膜由表面活性剂分子的致密单层和单个粘土矿物薄片组成。表面活性剂分子的密度与粘土矿物的表面电荷密度高度相关。这些膜的水含量低。在高于MLA粘土浓度的条件下制得的膜含有较少的表面活性剂,粘土矿物颗粒的聚集体,残留的Na +离子和水。通过分散液中粘土的浓度和粘土矿物的表面电荷密度,可以调节杂化有机粘土LB膜的性能。

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