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Microscopic mechanism of amino silicone oil modification and modification effect with different amino group contents based on molecular dynamics simulation

机译:基于分子动力学模拟的氨基硅油改性及不同氨基含量改性效果的微观机理

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The microscopic mechanism of amino silicone oil (ASO) modification of natural fiber was investigated for the first time using molecular dynamics (MD) simulation at the atomic and molecular levels. The MD simulation results indicated that the ASO molecular interacted with the cellulose molecular within the natural fiber, mainly by intermolecular forces of N-H-O and O-H-N hydrogen bonds and the molecular chain of ASO absorbed onto the natural fiber in a selective orientation, i.e., the hydrophobic alkyl groups (-C(n)H2(n+1)) project outward and the polar amino groups (-NH2) point to the surface of natural fiber. Consequently, the ASO modification changed the surface characteristic of natural fiber from hydrophilic to hydrophobic. Furthermore, the modification effects of the ASO modification layer with different amino group contents (m:n ratio) were also evaluated in this study by calculating the binding energy between the ASO modifier and natural fiber, and the cohesive energy density and free volume of the ASO modification layer. The results showed that the binding energy reached a maximum when the m: n ratio of ASO was of 8:4, suggesting that a good bonding strength was achieved at this m: n ratio. It was also found that the cohesive energy density enhanced with the increase in the amino group content, and the higher the cohesive energy density, the easier the formation of the ASO modification layer. However, the fraction free volume decreased with the increase in the amino group content. This is good for improving the water-proof property of natural fiber. The present work can provide an effective method for predicting the modification effects and designing the optimized m: n ratio of ASO modification. (C) 2018 Elsevier B.V. All rights reserved.
机译:首次在原子和分子水平上使用分子动力学(MD)模拟研究了天然纤维的氨基硅油(ASO)改性的微观机理。 MD模拟结果表明,ASO分子与天然纤维中的纤维素分子发生相互作用,主要是通过NHO和OHN氢键的分子间作用力以及ASO的分子链以选择性取向吸收到天然纤维上的,即疏水性烷基。 (-C(n)H2(n + 1))基团向外突出,极性氨基(-NH2)指向天然纤维的表面。因此,ASO改性将天然纤维的表面特性从亲水性变为疏水性。此外,本研究还通过计算ASO改性剂与天然纤维之间的结合能,内聚能的密度和自由体积,评估了具有不同氨基含量(m:n比)的ASO改性层的改性效果。 ASO修改层。结果表明,当ASO的m∶n比为8∶4时,结合能达到最大,表明在该m∶n比下获得了良好的结合强度。还发现内聚能密度随着氨基含量的增加而增强,内聚能密度越高,则ASO改性层的形成越容易。但是,自由分数随氨基含量的增加而降低。这对于改善天然纤维的防水性能是有利的。本研究可以为预测改性效果和设计最佳的ASO改性m:n比提供有效的方法。 (C)2018 Elsevier B.V.保留所有权利。

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