首页> 美国卫生研究院文献>Polymers >Effect of the Grafting Reaction of Aluminum Nitride on the Multi-Walled Carbon Nanotubes on the Thermal Properties of the Poly(phenylene sulfide) Composites
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Effect of the Grafting Reaction of Aluminum Nitride on the Multi-Walled Carbon Nanotubes on the Thermal Properties of the Poly(phenylene sulfide) Composites

机译:多孔碳纳米管上氮化铝的接枝反应对聚苯硫醚复合材料热性能的影响

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摘要

In this study, the PPS/MWCNTs/AlN composite was prepared with poly(phenylene sulfide) (PPS), covalent functionalized multi-walled carbon nanotubes (fMWCNTs), and aluminum nitride (AlN) via melt-blending techniques. The AlN is a fascinating non-oxidizing ceramic material having the highest thermal conductivity among the ceramic materials. In order to introduce the functional groups on the surface of the AlN particles, a silane coupling agent was used as it is able to graft with the functional groups on the covalent functionalized MWCNTs. The silanization reaction of the AlN was confirmed qualitatively and quantitatively by FT-IR (Fourier Transform Infrared Spectroscopy), and XPS (X-ray Photoelectron Spectroscopy). The grafting reaction of the AlN particles on the MWCNTs was confirmed using UV–Vis (Ultraviolet-Visible Spectroscopy), FE-SEM (Field-Emission Scanning Electron Microscopy) and FE-TEM (Field-Emission Transmission Electron Microscopy) images. The grafting reaction was accomplished by observing the change of the transmittance, the morphology of the AlN particle bonded to the MWCNTs. For the morphological changes of the fractured surface of the PPS/MWCNTs/AlN composites by FE-SEM, the hybrid filler was homogeneously dispersed on the PPS matrix when the AlN particle was grafted on the MWCNTs. The homogeneous distribution of the hybrid filler acts as a heat transfer path, which led the higher thermal properties, such as thermal conductivity, thermal resistance, and melting temperature than those of not grafted MWCNTs.
机译:在这项研究中,PPS / MWCNTs / AlN复合材料是通过聚苯硫醚(PPS),共价官能化的多壁碳纳米管(fMWCNTs)和氮化铝(AlN)通过熔融共混技术制备的。 AlN是在陶瓷材料中具有最高导热率的迷人的非氧化陶瓷材料。为了将官能团引入AlN颗粒的表面,使用了硅烷偶联剂,因为它能够与共价官能化的MWCNT上的官能团接枝。通过FT-IR(傅立叶变换红外光谱法)和XPS(X射线光电子能谱法)定性和定量地证实AlN的硅烷化反应。使用UV-Vis(紫外可见光谱),FE-SEM(场发射扫描电子显微镜)和FE-TEM(场发射透射电子显微镜)图像确认了AlN颗粒在MWCNTs上的接枝反应。接枝反应是通过观察透射率的变化,结合到MWCNTs上的AlN颗粒的形态来完成的。为了通过FE-SEM对PPS / MWCNTs / AlN复合材料的断裂表面进行形貌变化,当将AlN颗粒接枝到MWCNTs上时,杂化填料均匀分散在PPS基体上。杂化填料的均匀分布充当传热路径,与未接枝的MWCNT相比,具有更高的热性能,例如导热性,热阻和熔化温度。

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