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首页> 外文期刊>Russian Journal of Physical Chemistry >Self-Assembly of Alkylammonium Chains on Montmorillonite: Effect of Interlayer Cations, CEC, and Chain Length
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Self-Assembly of Alkylammonium Chains on Montmorillonite: Effect of Interlayer Cations, CEC, and Chain Length

机译:蒙脱石烷基铵链的自组装:层间阳离子,CEC和链长的作用

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摘要

Recently, polymeric materials have been filled with synthetic or natural inorganic compounds in order to improve their properties. Especially, polymer clay nanocomposites have attracted both academic and industrial attention. Currently, the structure and physical phenomena of organoclays at molecular level are difficultly explained by existing experimental techniques. In this work, molecular dynamics (MD) simulation was executed using the CLAYFF and CHARMM force fields to evaluate the structural properties of organoclay such as basal spacing, interlayer density, energy and the arrangement of alkyl chains in the interlayer spacing. Our results are in good agreement with available experimental or other simulation data. The effects of interlayer cations (Na+, K+, Ca2+), the cation exchange capacity, and the alkyl chain length on the basal spacing and the structural properties are estimated. These simulations are expected to presage the microstructure of organo-montmorillonite and lead relevant engineering applications.
机译:最近,聚合物材料已充满合成或天然无机化合物,以改善它们的性质。特别是,聚合物粘土纳米复合材料吸引了学术和工业的关注。目前,通过现有的实验技术难以解释分子水平的有机粘土的结构和物理现象。在这项工作中,使用CLAYFF和CHARMM力场执行分子动力学(MD)模拟,以评估有机粘土的结构性质,例如基底间距,层间密度,能量和中间间距中的烷基链的布置。我们的结果与可用的实验或其他仿真数据有关。估计层间阳离子(Na +,K +,Ca2 +),阳离子交换能力和烷基链长度对基底间​​距和结构性能的影响。这些模拟预计会展示有机麦芽酮和铅相关工程应用的微观结构。

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