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Adhesion enhancement of polymer blend interfaces by reactive block copolymer brushes

机译:反应性嵌段共聚物刷增强聚合物共混物界面的附着力

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摘要

The effects of reactive silane-terminated poly(styrene-b-dimethylsiloxane)block copolymer on the fracture toughness between a poly(dimethylsiloxane)elastomer and polystyrene substrate are measured by the JKR technique.Adhesion enhancement is not observed when the platinum hydrosilylation catalyst is poisoned with a thiol,confirming that adhesion enhancement is due to a hydrosilylation reaction between silane end groups and residual vinyl functionality in the elastomer.The fracture toughness increases with the block copolymer areal density,the molecular weight of the PDMS block and the concentration of residual vinyl groups in the elastomer.These results compare well with predictions of the Lake and Thomas theory for failure of crosslinked elastomers.Addition of 0.016 copolymer moleculesm~2 to the interface leads to a sixteen-fold increase in the fracture toughness.
机译:用JKR技术测定了反应性硅烷封端的聚苯乙烯-b-二甲基硅氧烷嵌段共聚物对聚二甲基硅氧烷弹性体与聚苯乙烯基体之间断裂韧性的影响,铂氢化硅烷化催化剂中毒时未观察到粘合增强硫醇,证实粘合力的提高是由于硅烷端基与弹性体中残留的乙烯基官能团之间的硅氢加成反应所致。断裂韧性随嵌段共聚物的面密度,PDMS嵌段的分子量和残留乙烯基的浓度而增加这些结果与莱克和托马斯理论对交联弹性体破坏的预测相吻合。在界面上添加0.016共聚物分子/ nm〜2导致断裂韧性提高了16倍。

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