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Hydrophobicity and polymer compatibility of POSS-modified Wyoming Na-montmorillonite for developing polymer-clay nanocomposites

机译:用于显影聚合物 - 粘土纳米复合材料的POTS改性WYOMING NA-MONTMORILLONITE的疏水性和聚合物相容性

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The aim of the present work was to investigate the hydrophobicity and polymer compatibility of aminopropylisooctyl polyhedral oligomeric silsequioxane (POSS) - modified Na-montmorillonite (Na-MMT) towards developing polymer-clay nanocomposites. The effect of different concentrations of POSS on properties of Na-MMT was studied. The intercalation ability of the POSS molecules into the Na-MMT interlayer was analyzed by X-ray diffraction. It was found that the d(001) value was increased with increasing the POSS concentration, indicating the successful intercalation of the POSS molecules into the Na-MMT interlayer. The d(001) value was 4.12 nm at 0.4 cation exchange capacity (CEC) loading of POSS, increased at a slight rate upon further increase of CEC loading, and finally reached 4.25 nm at 1.0 CEC loading of POSS. The results of the thermogravimetric (TGA) analysis confirmed the high thermal stability of the POSS-MMT. The thermal stability was defined as a 5% mass loss (T-5) at 0.2 CEC loading of POSS was observed at 352 degrees C and slightly decreased with further increase in the POSS concentration. The porous properties, such as specific surface area (SSA), pore volume, and pore size were estimated by the adsorption of N-2 molecules on the Na-MMT surface. The SSA and pore volume were reduced with increasing the concentration of the POSS molecules due to the adsorption of the POSS molecules on the Na-MMT, while the pore size was increased upon the formation of macroporous structure. The interfacial interaction energy between water and POSS-MMT (Delta G(Clay/Water/Clay)(IF)) was used to evaluate the surface hydrophobicity, and a similar approach was also applied to assess the polymer compatibility of the developed composite. The obtained results confirm that the polymer compatibility of POSS-MMT prepared in this study is better than that of commonly used HDTMA-MMT. (C) 2017 Elsevier Inc. All rights reserved.
机译:本作本作作品的目的是探讨氨基丙基异辛基多面硅氧烷(POSS)改性的Na-Montmorillonite(NA-MMT)朝向显影聚合物 - 粘土纳米复合材料的疏水性和聚合物相容性。研究了不同浓度对Na-MMT性质的影响。通过X射线衍射分析了POSS分子在NA-MMT中间层中的嵌入能力。发现D(001)值随着量度的浓度而增加,表明将POSS分子成功插入NA-MMT中间层。 D(001)值在0.4阳离子交换能力(CEC)负荷下为4.12nm,在CEC载荷的进一步增加时以略微速率提高,并且最终达到4.22mm的POSS1.0 CEC负荷。热重增压(TGA)分析的结果证实了POSS-MMT的高热稳定性。热稳定性定义为在352℃的352℃下观察到的0.2 CEC负载下的5%质量损失(T-5),并在POSS浓度进一步增加时略微降低。通过在Na-MMT表面上吸附N-2分子,估计多孔性质,例如比表面积(SSA),孔体积和孔径。随着Na-MMT上的POSS分子的吸附而增加了SSA和孔体积,随着对NA-MMT上的POSS分子的吸附而增加,而在形成大孔结构时孔径增加。水和POSS-MMT之间的界面相互作用能量(Delta G(粘土/水/粘土)(IF))用于评估表面疏水性,并且还应用类似的方法以评估显式复合材料的聚合物相容性。所得结果证实,本研究中制备的POSS-MMT的聚合物相容性优于常用的HDTMA-MMT。 (c)2017年Elsevier Inc.保留所有权利。

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