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首页> 外文期刊>Applied clay science >Organosilane-functionalized halloysite for high performance halloysite/heterophasic ethylene-propylene copolymer nanocomposites
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Organosilane-functionalized halloysite for high performance halloysite/heterophasic ethylene-propylene copolymer nanocomposites

机译:有机硅烷官能化的埃洛石,用于高性能埃洛石/多相乙烯-丙烯共聚物纳米复合材料

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摘要

The surface modification of hydrophilic inorganic clays with organosilanes is a promising strategy to improve its dispersion as filler and interaction with hydrophobic polymers. Successful organomodification strongly depends on the characteristics of the silane precursor (functional group, chain size and concentration) and the reaction conditions (solvent polarity). This study correlates these factors with the morphological, thermal and mechanical properties of the final halloysite/heterophasic ethylene-propylene copolymer nanocomposites. When the halloysite (Hal) silane-modification was conducted in nonpolar solvents, the most efficient filler dispersion was achieved. Additionally, a good balance in the mechanical properties was obtained by using the more hydrophobic silane-modifier, improving the Young modulus in 38%, without loss of the impact properties at 23 degrees C. These optimized clay polymer nanocomposites exhibit properties suitable for many industrial applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:用有机硅烷对亲水性无机粘土进行表面改性是改善其作为填料的分散性以及与疏水性聚合物相互作用的一种有前途的策略。成功的有机改性很大程度上取决于硅烷前体的特性(官能团,链大小和浓度)和反应条件(溶剂极性)。这项研究将这些因素与最终的埃洛石/多相乙烯-丙烯共聚物纳米复合材料的形态,热和机械性能相关联。当在非极性溶剂中进行埃洛石(Hal)硅烷改性时,可以实现最有效的填料分散。此外,通过使用疏水性更高的硅烷改性剂,可以在机械性能上取得良好的平衡,将杨氏模量提高了38%,而在23摄氏度时没有损失冲击性能。这些优化的粘土聚合物纳米复合材料具有适合许多工业应用的性能应用程序。 (C)2015 Elsevier B.V.保留所有权利。

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