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聚苯胺稳定的四氧化三铁纳米粒子增强环氧树脂纳米复合材料。

Polyaniline stabilized magnetite nanoparticle reinforced epoxy nanocomposites.

机构信息

Integrated Composites Lab (ICL), Dan F. Smith Department of Chemical Engineering, Lamar University, Beaumont, Texas 77710, USA.

出版信息

ACS Appl Mater Interfaces. 2012 Oct 24;4(10):5613-24. doi: 10.1021/am301529t. Epub 2012 Oct 1.

Abstract

Magnetic epoxy polymer nanocomposites (PNCs) reinforced with magnetite (Fe(3)O(4)) nanoparticles (NPs) have been prepared at different particle loading levels. The particle surface functionality tuned by conductive polyaniline (PANI) is achieved via a surface initiated polymerization (SIP) approach. The effects of nanoparticle loading, surface functionality, and temperature on both the viscosity and storage/loss modulus of liquid epoxy resin suspensions and the physicochemical properties of the cured solid PNCs are systematically investigated. The glass transition temperature (T(g)) of the cured epoxy filled with the functionalized NPs has shifted to the higher temperature in the dynamic mechanical analysis (DMA) compared with that of the cured pure epoxy. Enhanced mechanical properties of the cured epoxy PNCs filled with the functionalized NPs are observed in the tensile test compared with that of the cured pure epoxy and cured epoxy PNCs filled with as-received NPs. The uniform NP distribution in the cured epoxy PNCs filled with functionalized NPs is observed by scanning electron microscope (SEM). These magnetic epoxy PNCs show the good magnetic properties and can be attached by a permanent magnet. Enhanced interfacial interaction between NPs and epoxy is revealed in the fracture surface analysis. The PNCs formation mechanism is also interpreted from the comprehensive analysis based on the TGA, DSC, and FTIR in this work.

摘要

磁性环氧树脂纳米复合材料(PNC)通过表面引发聚合(SIP)方法,用磁性氧化铁(Fe(3)O(4))纳米粒子(NPs)增强,并对粒子表面功能进行调整。研究了纳米粒子负载量、表面功能和温度对液体环氧树脂悬浮液的粘度和储能/损耗模量以及固化固体 PNC 的物理化学性质的影响。与纯固化环氧树脂相比,动态力学分析(DMA)中填充有功能化 NPs 的固化环氧树脂的玻璃化转变温度(T(g))向更高温度移动。与纯固化环氧树脂和填充有原始 NPs 的固化环氧树脂 PNC 相比,拉伸试验中观察到填充有功能化 NPs 的固化环氧树脂 PNC 的力学性能得到增强。通过扫描电子显微镜(SEM)观察到填充有功能化 NPs 的固化环氧树脂 PNC 中 NP 的均匀分布。这些磁性环氧树脂 PNC 具有良好的磁性,可以被永磁体吸附。在断口分析中揭示了 NPs 和环氧树脂之间增强的界面相互作用。通过综合分析 TGA、DSC 和 FTIR,本工作还解释了 PNC 的形成机制。

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