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Exceptionally strong stiff and hard hybrid material based on an elastomer and isotropically shaped ceramic nanoparticles

机译:基于弹性体和各向同性陶瓷纳米粒子的超强硬和硬混合材料

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摘要

In this work the fabrication of hard, stiff and strong nanocomposites based on polybutadiene and iron oxide nanoparticles is presented. The nanocomposites are fabricated via a general concept for mechanically superior nanocomposites not based on the brick and mortar structure, thus on globular nanoparticles with nanosized organic shells. For the fabrication of the composites oleic acid functionalized iron oxide nanoparticles are decorated via ligand exchange with an α,ω-polybutadiene dicarboxylic acid. The functionalized particles were processed at 145 °C. Since polybutadiene contains double bonds the nanocomposites obtained a crosslinked structure which was enhanced by the presence of oxygen or sulfur. It was found that the crosslinking and filler percolation yields high elastic moduli of approximately 12–20 GPa and hardness of 15–18 GPa, although the polymer volume fraction is up to 40%. We attribute our results to a catalytically enhanced crosslinking reaction of the polymer chains induced by oxygen or sulfur and to the microstructure of the nanocomposite.
机译:在这项工作中,提出了基于聚丁二烯和氧化铁纳米粒子的硬,硬和强纳米复合材料的制造。纳米复合材料是通过一般概念制造的,其机械性能优异的纳米复合材料不是基于实体结构,而是基于具有纳米级有机壳的球形纳米颗粒。为了制造复合材料,油酸官能化的氧化铁纳米粒子通过与α,ω-聚丁二烯二羧酸的配体交换来装饰。官能化的颗粒在145℃下加工。由于聚丁二烯包含双键,所以纳米复合材料获得了交联结构,该交联结构由于存在氧或硫而得到增强。研究发现,尽管聚合物的体积分数高达40%,但交联和填料的渗滤会产生大约12–20 GPa的高弹性模量和15–18 GPa的硬度。我们将我们的结果归因于由氧或硫诱导的聚合物链的催化增强的交联反应以及纳米复合材料的微观结构。

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