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Surface modification of montmorillonite by the use of organic cations via conventional ion exchange method

机译:通过常规离子交换方法使用有机阳离子的蒙脱石表面改性

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The main problems in synthesis polymer clay nanocomposites(PCNs)with nanoclay filler is the nanoclay was not compatible to most of polymer matrix due to its hydrophilicity which is often causes agglomeration of the nanoclay in the polymer matrix.Surface modification of nanoclay for a good compatibility with polymer matrix is the most important step to achieve homogenous dispersion of clay platelets in polymers.Modification of nanoclay montmorillonite(MMT)can be done through conventional ion exchange method using cationic surfactants.Montmorillonite(MMT)was modified with several cationic surfactants based on its cationic exchange capacity(CEC).The effect of chemical composition of modified MMT on the basal spacing were evaluated by small angle x-ray diffraction(SAXS),the highest basal spacing expanded from 1.21 nm to 2.00 nm showed the intercalation of the surfactant ion into the intergalerry of sodium montmorillonite clay layers which caused increasing of surface area and porosity.FTIR spectra shows the successful of inserting alkyl groups from cationic surfactant in interlayer space of montmorillonite.Organophilization reduces the energy of sodium montmorillonite and improves its compatibility with organic polymer.Dispersion analysis and contact angle results shown the surface wettability of montmorillonite was enhanced from hydrophilic to organophilic and resulting good solubility in monomer phase.
机译:在合成聚合物粘土纳米复合材料(PCNS)与纳米粘土填料的主要问题是纳米粘土不是大多数聚合物基质相容,由于其亲水性,其经常导致在纳米粘土的聚合物matrix.Surface改性纳米粘土的附聚为一个良好的相容性与聚合物基质是实现纳米粘土蒙脱石的polymers.Modification(MMT)粘土小片的均一的分散体的最重要的步骤可通过常规的离子交换方法,使用阳离子surfactants.Montmorillonite(MMT)来进行基于与几个阳离子表面活性剂进行了修改其阳离子交换容量(CEC)上的基面间距改性MMT的化学组成的.The效果通过小角X射线衍射(SAXS)来评价,最高层间距从1.21纳米扩大到2.00纳米表明该表面活性剂离子的插层入引起的表面积和porosity.FTIR的增加的钠蒙脱石粘土层的intergalerry谱示出了成功的插入从阳离子表面活性剂的烷基在夹层montmorillonite.Organophilization的空间的减少钠蒙脱石的能量,并提高了其与所示的蒙脱石表面润湿性有机polymer.Dispersion分析和接触角的结果的相容性由亲水性得到增强,亲有机物质的和在单体阶段所得良好的溶解性。

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