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首页> 外文期刊>Journal of Materials Science >A novel shape memory-assisted and thermo-induced self-healing boron nitride/epoxy composites based on Diels-Alder reaction
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A novel shape memory-assisted and thermo-induced self-healing boron nitride/epoxy composites based on Diels-Alder reaction

机译:一种基于Diels-Alder反应的新型形状记忆辅助和热诱导的自愈合硼/环氧复合材料

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摘要

Hexagonal boron nitride (hBN), as one of the two-dimensional (2D) materials, possesses many excellent properties like others. Herein, we report a novel self-healing epoxy filled with hBN. High compatibility between hBN and the epoxy matrix was obtained by the modification of hBN with silane coupling agent (Mi-Si). At the meantime, excellent self-healing behavior was achieved by retro Diels-Alder (r-DA) reaction between the maleimide functional group in the modified hBN (m-hBN-OH) and the added furfurylamine. Besides, the inadequate curing of epoxy led to the glass transition temperature (Tg), which is also seemed as the transition temperature for the shape memory of the epoxy, below the r-DA reaction temperature, and endowed the system with the shape memory-assisted self-healing properties. The m-hBN-OH was characterized by Fourier transform infrared spectra, nuclear magnetic resonance (H-1-NMR) spectra, X-ray diffraction experiments, X-ray photoelectron spectroscopy measurements and so on. The new m-hBN-OH modifier was prepared with the optimized Mi-Si/hBN-OH weight ratio of 3.0, which could both improve the thermal property and achieve better thermal conductivity. This designed m-hBN-OH/epoxy could actually show ideal self-healing properties due to the shape memory-assisted self-healing effect. The thermal conductivity of the neat epoxy resin and the m-hBN-OH/epoxy was 0.2156 W m(-1) K-1 and 0.4358 W m(-1) K-1, respectively. As a novel material with efficient thermal conductivity, hBN made great contribution to the thermally induced shape memory and self-healing property. Systematic researches reveal that the composites are promising as long durable thermal interface materials, anti-scratch materials and so on.
机译:作为二维(2D)材料之一的六边形氮化硼(HBN)具有与其他材料一样优异的性质。在此,我们报告了一种充满HBN的新型自我愈合环氧树脂。通过用硅烷偶联剂(MI-Si)改性HbN与环氧基质之间的高相容性。与此同时,通过改性HBN(M-HBN-OH)中的马来酰亚胺官能团与加入的糠酰胺之间的马来酰亚胺官能团之间的r-alder(R-DA)反应实现了优异的自我愈合行为。此外,环氧树脂的固化不足导致玻璃化转变温度(Tg),其似乎是环氧树脂的形状记忆的过渡温度,低于R-DA反应温度,并赋予该系统具有形状记忆 - 辅助自我修复特性。 M-HBN-OH的特征在于傅里叶变换红外光谱,核磁共振(H-1-NMR)光谱,X射线衍射实验,X射线光电子谱测量等。使用3.0的优化的Mi-Si / HbN-OH重量比制备新的M-HBN-OH改性剂,其既可以改善热量,又达到更好的导热率。这种设计的M-HBN-OH /环氧树脂可以实际上表现出理想的自我愈合特性,因为形状记忆辅助自我愈合效果。纯环氧树脂和M-HBN-OH /环氧树脂的导热率分别为0.2156WM(-1)K-1和0.4358WM(-1)k-1。作为一种具有有效导热性的新型材料,HBN对热诱导的形状记忆和自我愈合性质做出了极大的贡献。系统的研究表明,复合材料具有长耐用的热界面材料,防划痕材料等。

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