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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Shape Memory of Microscale and Nanoscale Imprinted Patterns on a Supramolecular Polymer Compound
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Shape Memory of Microscale and Nanoscale Imprinted Patterns on a Supramolecular Polymer Compound

机译:微尺度和纳米级压印图案在超分子聚合物化合物上的形状记忆

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Surface memory effects for micropattern and nanopattern are demonstrated for shape memory compounds composed of mixtures of the zinc salt of a sulfonated poly(ethylene-copropylene-co-ethylidene norbornene) ionomer and three different low molar mass fatty acids (FAs): lauric acid (LA), stearic acid (SA), and zinc stearate (ZnSt). This work shows the ability to tune the surface pattern switching temperature (Tc) by simply varying the FA melting point. The melting point of the FA in the ionomer compound is depressed from that of the pure FA due to strong dipolar interactions between the ionomer and the FAs. Surface pattern memory and recovery are shown for compounds with 20 wt% LA, SA, or ZnSt, where T-c = 50, 80, and 100 degrees C, respectively. Recovery efficiencies for micropatterns are better than 92% for all three compounds and 73% for a nanopattern for the ionomer/ZnSt compound.
机译:用于微图案和纳米图案的表面存储器效果用于由磺化聚(乙烯 - 叔丙烯 - 乙烯中)离聚物和三种不同低摩尔质量脂肪酸(FAS)的三种不同低摩尔质量脂肪酸(FAS)( La),硬脂酸(SA)和硬脂酸锌(ZnST)。 这项工作表明,通过简单地改变FA熔点来调谐表面模式开关温度(TC)的能力。 由于离聚物和Fas之间的强偶极相互作用,离聚物化合物中的FA的熔点从纯FA的熔点抑制。 为具有20wt%La,SA或ZnST的化合物示出了表面图案存储器和恢复,其中T-C = 50,80和100摄氏度。 对于离聚物/ ZnST化合物的纳米透明图案,MicroOpatterns的恢复效率优于92%。

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