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Mechanical properties of functionalized carbon nanotubes

机译:功能化碳纳米管的机械性能

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Carbon nanotubes ( CNTs) used to reinforce polymer matrix composites are functionalized to form covalent bonds with the polymer in order to enhance the CNT/polymer interfaces. These bonds destroy the perfect atomic structures of a CNT and degrade its mechanical properties. We use atomistic simulations to study the effect of hydrogenization on the mechanical properties of single-wall carbon nanotubes. The elastic modulus of CNTs gradually decreases with the increasing functionalization (percentage of C-H bonds). However, both the strength and ductility drop sharply at a small percentage of functionalization, reflecting their sensitivity to C-H bonds. The cluster C-H bonds forming two rings leads to a significant reduction in the strength and ductility. The effect of carbonization has essentially the same effect as hydrogenization.
机译:用于增强聚合物基质复合材料的碳纳米管(CNT)被功能化以与聚合物形成共价键,从而增强CNT /聚合物的界面。这些键破坏了CNT的完美原子结构并降低了其机械性能。我们使用原子模拟来研究氢化对单壁碳纳米管力学性能的影响。 CNT的弹性模量随功能化程度(C-H键百分比)的增加而逐渐降低。但是,强度和延展性均在少量官能化作用下急剧下降,反映了它们对C-H键的敏感性。形成两个环的簇状C-H键导致强度和延展性显着降低。碳化作用与氢化作用基本相同。

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