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Fabrication of Water-Resistant Nacre-like Polymer/Clay Nanocomposites via in SituPolymerization

机译:通过原位制备耐水的珍珠母状聚合物/粘土纳米复合材料聚合

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摘要

Fabrication and characterization of water-resistant nacre-like polymer/clay nanocomposites, in which clay platelets and hydrophobic polymer chains are alternately stacked in parallel, are reported. Hydrophilic clay was converted by an ion-exchange reaction with a methacrylate monomer having a long alkyl chain and a quaternary ammonium salt group at the end. The subsequent in situ polymerization bound the neighboring clay surfaces, leading to the preferential orientation of the clay platelets owing to their high aspect ratio. The composites maintained excellent mechanical properties even after being immersed in water for more than a day. Strong shape stability was observed in water as well as in various organic solvents.
机译:报告了耐水珍珠母状聚合物/粘土纳米复合材料的制备和表征,其中粘土薄片和疏水性聚合物链交替交替地平行堆叠。亲水性粘土通过与末端具有长烷基链和季铵盐基团的甲基丙烯酸酯单体进行离子交换反应而转化。随后的原位聚合作用限制了相邻的粘土表面,由于其高的长径比,导致了粘土薄片的优先取向。即使将复合材料浸入水中超过一天,仍可保持出色的机械性能。在水以及各种有机溶剂中都观察到了很强的形状稳定性。

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