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The role of carbon nanofiber defects on the electrical and mechanical properties of CNF-based resins

机译:碳纳米纤维缺陷对基于CNF的树脂的电气和机械性能的作用

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摘要

Heat treatment of carbon nanofibers has proven to be an effective method in removing defects from carbon nanofibers, causing a strong increase in their structural perfection and thermal stability. It affects the bonding states of carbon atoms in the nanofiber structure and causes a significant transformation in the hybridization state of the bonded carbon atoms. Nanofilled resins made of heat-treated CNF show significant increases in their electrical conductivity even at low concentrations. This confirms that enhancement in the perfection of the fiber structure with consequent change in the morphological features plays a prominent role in affecting the electrical properties. Indeed heat-treated CNFs display a stiff structure and a smooth surface which tends to lower the thickness of the unavoidable insulating epoxy layer formed around the CNF which, in turn, plays a fundamental role in the electrical transport properties along the conducting clusters. This might be very beneficial in terms of electrical conductivity but might have negligible effect on the mechanical properties.
机译:事实证明,对碳纳米纤维进行热处理是去除碳纳米纤维缺陷的有效方法,从而大大提高了其结构完善性和热稳定性。它影响纳米纤维结构中碳原子的键合状态,并导致键合碳原子的杂化状态发生重大转变。由热处理的CNF制成的纳米填充树脂即使在低浓度下也显示出电导率的显着提高。这证实了增强纤维结构的完善性以及随之而来的形态学特征改变在影响电性能方面起着重要作用。实际上,经热处理的CNF显示出坚硬的结构和光滑的表面,这趋于降低在CNF周围形成的不可避免的绝缘环氧层的厚度,这继而在沿着导电簇的电传输性质中起着基本作用。就导电率而言,这可能是非常有益的,但对机械性能的影响可以忽略不计。

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