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Heat and solvent responsive polytriazole: shape recovery properties in different solvents

机译:热响应和溶剂响应的聚三唑:在不同溶剂中的形状恢复特性

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摘要

Shape memory polytriazole actuatable by both heat and solvents is presented. Hydrogen bonding solvents exhibit strong influence on shape recovery. In this work, a dual-stimuli responsive (both temperature and solvents) polymer is synthesized from propargylated bisphenol-F (PF) and a tris azide (TA) monomer via an azide-alkyne polycycloaddition reaction in the presence of a copper catalyst. The polytriazole exhibits a trigger temperature at 103 degrees C and displays cyclic shape memory properties. The SMP shows a storage modulus >2 GPa with a cross-link density of 6.9 x 10(3) mol m(-3). The SMP possesses shape memory features in different solvents. Highly polar solvents lead to shape recovery with cracks whereas hydrogen bonding solvents like ethanol supported crack-free shape recovery. A two-step kinetic profile is seen in the shape recovery sequence of SMP in hydrogen bonding solvents. The SMP is hydrophobic and no recovery in water is observed.
机译:提出了通过热和溶剂均可致动的形状记忆聚三唑。氢键键合溶剂对形状恢复具有强烈影响。在这项工作中,在铜催化剂的存在下,通过叠氮化物-炔烃多环加成反应,由炔丙基化的双酚-F(PF)和三叠氮化物(TA)单体合成具有双刺激响应的聚合物(温度和溶剂均如此)。聚三唑的触发温度为103摄氏度,并具有循环形状记忆特性。 SMP的储能模量> 2 GPa,交联密度为6.9 x 10(3)mol m(-3)。 SMP在不同溶剂中具有形状记忆功能。高极性溶剂可导致裂纹恢复形状,而氢键合溶剂(如乙醇)则可实现无裂纹恢复形状。在氢键合溶剂中SMP的形状恢复顺序中可以看到两步动力学曲线。 SMP是疏水的,没有观察到水的回收。

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