首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular dynamics simulation of thermomechanical properties of montmorillonite crystal. 3. Montmorillonite crystals with PEO oligomer intercalates
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Molecular dynamics simulation of thermomechanical properties of montmorillonite crystal. 3. Montmorillonite crystals with PEO oligomer intercalates

机译:蒙脱石晶体热力学性质的分子动力学模拟。 3.带有PEO低聚物的蒙脱石晶体

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We present the results of molecular dynamics (MD) simulation of the structure and thermomechanical behavior of Wyoming-type Na+-montmorillonite (MMT) with poly(ethylene oxide) (PEO) oligomer intercalates. Periodic boundary conditions in all three directions and simulation cells containing two MMT lamellae [Si248Al8][Al112Mg16]O-640[OH]128 oriented parallel to the XY-plane were used. The interlamellar space, or gallery, between neighboring MMT lamellae was populated by 24 Na+ counterions and PEO macromolecules of different lengths, ranging from 2 up to 240 repeat units. We considered three different loadings of PEO within the gallery: 80, 160, and 240 repeat units, corresponding to 13, 23, and 31 wt % PEO based on total mass of the nanocomposite, respectively. In the cases of 13 and 23 wt %, the polymer chains formed one or two well-defined amorphous layers with interlayer distances of 1.35 and 1.8 nm, respectively. We have observed also formation of a wider monolayer gallery with interlayer distances of 1.6 nm. Three-layer PEO films formed in the case of 31 wt % loading. The thermal properties were analyzed over the range 300-400 K, and the isothermal linear compressibility, transversal moduli, and shear moduli were calculated at 300 K. These properties are compared with the results of our simulation of thermal and mechanical properties of MMT. crystal with galleries filled by one or two water layers as well as with those of an isolated clay nanoplate.
机译:我们介绍了怀俄明型Na +-蒙脱石(MMT)与聚(环氧乙烷)(PEO)低聚物插层的分子动力学(MD)模拟的结果。使用了在所有三个方向上的周期性边界条件,并使用了包含两个平行于XY平面定向的MMT薄片[Si248Al8] [Al112Mg16] O-640 [OH] 128的模拟单元。相邻MMT薄片之间的薄片间空间或廊道由24种Na +抗衡离子和不同长度的PEO大分子组成,其长度范围为2至240个重复单元。我们考虑了画廊中PEO的三种不同负载:80、160和240个重复单元,分别对应于基于纳米复合材料总质量的13、23和31 wt%的PEO。在13重量%和23重量%的情况下,聚合物链形成一层或两层明确界定的非晶层,其层间距离分别为1.35和1.8nm。我们还观察到形成了更宽的单层通道,其层间距离为1.6 nm。在31重量%负载的情况下形成三层PEO膜。在300-400 K范围内分析了热性能,并在300 K下计算了等温线性可压缩性,横向模量和剪切模量。将这些性能与我们对MMT的热和机械性能进行仿真的结果进行了比较。晶体具有由一两个水层以及孤立的粘土纳米板填充的画廊。

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