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Multi-Fold Enhancement in Compressive Properties of Polystyrene Foam Using Pre-delaminated Stearate Functionalized Layer Double Hydroxides

机译:使用预分层的硬脂酸酯官能化层双氢氧化物提高聚苯乙烯泡沫塑料的压缩性能

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摘要

Developing an environmentally benign styrene foam is a critical environmental need. Supercritical CO use in foams has proven to be a valuable path. Adding fillers to increase bubble nucleation has been pursued concurrently. A prominent filler used is high surface area fillers, such as smectic clays. However, all studies to date show a limit of 152% in compressive moduli and 260% in the compressive stress. The values, even with such gains, limit structural application. A seminal work in 1987 by Suh and Cotton proved that carbonyl linkages in calcium carbonates and CO interact and impact nucleation efficiency and performance in supercritical CO foams. In this paper, a high surface area clay (layer double hydroxides) which begins in an exfoliated state, then functionalized with a long chain alkyl carboxylate (stearic acid) is synthesized. The result is a remarkable multi-fold improvement to the compressive properties in comparison to polystyrene (PS); a 268% and 512% increase in compressive modulus and strength, respectively. Using a pre-delaminated approach, the higher surface area was achieved in the clays. The presence of the stearate improved the interactions between the clay galleries and PS through hydrophobic-hydrophobic interactions. The glass transition temperature of the nanocomposites was observed to shift to higher values after foaming. The results point to a new path to increase performance using a pre-delaminated clay with functional groups for environmentally benign foams.
机译:开发对环境无害的苯乙烯泡沫是关键的环境需求。泡沫中超临界CO的使用已被证明是一条有价值的道路。同时寻求添加填料以增加气泡成核。使用的突出填料是高表面积填料,例如近晶粘土。但是,迄今为止的所有研究都显示出压缩模量的极限为152%,压缩应力的极限为260%。即使具有这样的增益,这些值也限制了结构应用。 Suh和Cotton于1987年所做的开创性工作证明,碳酸钙和CO中的羰基键相互作用并影响超临界CO泡沫中的成核效率和性能。在本文中,合成了一种高表面积的粘土(双层氢氧化物),该粘土以剥离状态开始,然后被长链烷基羧酸盐(硬脂酸)官能化。与聚苯乙烯(PS)相比,其压缩性能显着提高了许多倍;压缩模量和强度分别增加了268%和512%。使用预分层方法,可以在粘土中获得更大的表面积。硬脂酸盐的存在通过疏水-疏水相互作用改善了粘土画廊和PS之间的相互作用。观察到纳米复合材料的玻璃化转变温度在发泡后移至更高的值。结果指出了使用带有功能基团的预分层粘土生产对环境无害的泡沫提高性能的新途径。

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