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首页> 外文期刊>Journal of Polymer Research >Siloxane core dianhydride modified ether linked cyclohexyl diamine based multi-walled carbon nanotube reinforced polyimide (MWCNT/PI) nanocomposites
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Siloxane core dianhydride modified ether linked cyclohexyl diamine based multi-walled carbon nanotube reinforced polyimide (MWCNT/PI) nanocomposites

机译:硅氧烷核心二酐改性的醚连接的环己基二胺基多壁碳纳米管增强聚酰亚胺(MWCNT / PI)纳米复合材料

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摘要

A new type of siloxane core based polyimide (PI) was designed and developed by the reaction between siloxane core dianhydride (SDA) and ether linked cyclohexyl diamine (ELCD), using the in-situ polymerization approach via thermal imidization. This PI was further modified with different loading levels of MWCNTs to get MWCNT reinforced PI nanocomposites. The synthesized PIs were then characterized, using analytical methods. From the thermal analysis, it was observed that the values of T_g are increased by about 12 % by incorporating the amine functionalized MWCNTs into the PI matrix than that of neat PI. This is because of the constraint effect of MWCNTs as well as the reduction in the movement of the polymer chains. They also exhibited enhanced values of the dielectric constant, with the successive increase in the incorporation of MWCNTs to the PI matrix. No aggregation and better homogeneity of MWCNTs throughout the PI matrix have been achieved, as evidenced from scanning electron microscopy (SEM). The transmission electron microscopy (TEM) studies indicate that there are no confined domains in and around the region of MWCNTs, after the formation of nanocomposites. It is ascertained that the newly designed MWCNT/PI nanocomposite is responsible for the significant improvement of dispersion, thus possesses attractive flame retardancy and insulation behaviour.
机译:通过采用热酰亚胺化的原位聚合方法,通过硅氧烷核心二酐(SDA)与醚连接的环己基二胺(ELCD)之间的反应,设计和开发了一种新型的基于硅氧烷核心的聚酰亚胺(PI)。用不同负载量的MWCNT进一步修饰该PI,以获得MWCNT增强的PI纳米复合材料。然后使用分析方法对合成的PI进行表征。从热分析中,观察到通过将胺官能化的MWCNT掺入PI基质中,与纯PI相比,T_g的值增加了约12%。这是由于MWCNT的约束作用以及聚合物链运动的减少。它们还表现出增强的介电常数值,随着MWCNT向PI基质的掺入不断增加。如通过扫描电子显微镜(SEM)所证明的,没有实现整个PI基质中MWCNT的聚集和更好的均匀性。透射电子显微镜(TEM)研究表明,在纳米复合材料形成后,MWCNTs区域内和周围没有约束域。可以确定的是,新设计的MWCNT / PI纳米复合材料可显着改善分散性,因此具有诱人的阻燃性和绝缘性能。

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