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Synthesis and Characterization of Magnetic Polyurethane Nanocomposite Foams

机译:磁性聚氨酯纳米复合泡沫的合成与表征

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New magnetic polyurethane nanocomposite foams have been synthesized by the one-shot method. The opened-cell soft foams contain a dispersion of uniformly sized nanocrystalline iron oxide prepared ex situ by the high temperature thermal decomposition of iron acetylacetonate in phenyl ether in the presence of oleic acid. The magnetic particles were dispersed in polyol by sonication prior to the reaction of the latter with isocyanate to produce the magnetic foams. A 7 wt% loading of iron oxide yielded a soft, flexible foam with a room temperature magnetization of 3.5 emu/g at one Tesla. Higher loadings of iron oxide are possible without destruction of the soft open-cell polyurethane structure. Physicochemical characterization of the foams will be presented along with magnetic and mechanical properties. Potential applications include smart materials such as magnetic shape memory foams, adhesive-free metal to foam seals, inductively coupled thermal foams and applications for conformable foams having a magnetic component such as healthcare products.
机译:通过一次法合成了新型磁性聚氨酯纳米复合泡沫。开孔软泡沫包含均一尺寸的纳米晶状氧化铁的分散体,该分散体是通过在油酸存在下将乙酰丙酮铁在苯醚中高温热分解而原位制备的。通过超声处理将磁性颗粒分散在多元醇中,然后使后者与异氰酸酯反应以生产磁性泡沫。负载7 wt%的氧化铁会产生柔软,柔软的泡沫,在一特斯拉下的室温磁化强度为3.5 emu / g。在不破坏软质开孔聚氨酯结构的情况下,更高含量的氧化铁是可能的。将介绍泡沫的物理化学特征以及磁性和机械性质。潜在的应用包括智能材料,例如磁性形状记忆泡沫,无粘合剂的金属至泡沫密封件,感应耦合导热泡沫,以及具有磁性成分的顺应性泡沫的应用,例如医疗保健产品。

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