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首页> 外文期刊>Nanotechnology >Multifunctionality of structural nanohybrids: the crucial role of carbon nanotube covalent and non-covalent functionalization in enabling high thermal, mechanical and self-healing performance
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Multifunctionality of structural nanohybrids: the crucial role of carbon nanotube covalent and non-covalent functionalization in enabling high thermal, mechanical and self-healing performance

机译:结构纳米胺的多功能性:碳纳米管共价和非共价官能化在实现高热,机械和自愈合性能方面的关键作用

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摘要

This study proposes new kinds of functionalization procedures able to preserve specific properties of carbon nanotubes (CNTs) and to improve compatibility with the epoxy matrix. Through a covalent approach, for the first time, CNTs are functionalized with the same hardener agent, 4,4 '-diaminodiphenyl sulfone, employed to solidify the epoxy matrix and capable to fulfill mechanical requirements of industrial structural resins. The same CNTs are non-covalently modified through the polymer wrapping mechanism with benzoxazine (Bz) terminated polydimethylsiloxane (PDMS). The comparison between electrical and mechanical properties of the nanocomposites highlights the success of the non-covalent functionalization in determining an increase in the glass transition temperature (Tg) and in better preserving the unfunctionalized CNT electrical conductivity. Besides, tunneling atomic force microscopy (TUNA), powerful to catch ultra-low currents, has been used for revealing the morphology on nanoscale domains and detecting the conductivity on the same location of CNT/epoxy resins. No electrical contacts to the grounds have been used for the TUNA analysis; a procedure that does not alter the results on the interface domains which experience contact areas with strong differences in their properties. The effectiveness of performed CNT functionalizations as a route to impart self-healing efficiency to the resin formulations has also been proved.
机译:本研究提出了能够保持碳纳米管(CNT)的特异性特性的新型功能化程序,并改善与环氧基质的相容性。通过共价方法,首次用相同的硬化剂,4,4'-二胺二苯基砜官能化,用于固化环氧基质并能够满足工业结构树脂的机械要求。通过具有苯并嗪(BZ)封端的聚二甲基硅氧烷(PDMS)的聚合物包裹机制是非共价修饰的非共价修饰。纳米复合材料亮点非共价官能化在确定玻璃化转变温度(Tg)和更好的保留未官能化的CNT的导电性的增加成功的电气和机械性能之间的比较。此外,隧穿原子力显微镜(金枪鱼),功能强大的用于捕获超低电流,用于揭示纳米级结构域的形态,并检测CNT /环氧树脂的相同位置的电导率。对地面没有电触点已用于金枪鱼分析;不会在接口域上改变结果的过程,该域在其特性中经历具有强烈差异的接触区域。还证明了CNT官能化作为赋予树脂制剂的自愈合效率的途径的CNT官能化的有效性。

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