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首页> 外文期刊>Nanomaterials >Tuning the Mechanical and Adhesion Properties of Carbon Nanotubes Using Aligned Cellulose Wrap (Cellulose Nanotube): A Molecular Dynamics Study
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Tuning the Mechanical and Adhesion Properties of Carbon Nanotubes Using Aligned Cellulose Wrap (Cellulose Nanotube): A Molecular Dynamics Study

机译:用对齐纤维素包装调节碳纳米管的机械和粘附性能(纤维素纳米管):分子动力学研究

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Improving the adhesion properties of carbon nanotubes (CNTs) at the molecular scale can significantly enhance dispersion of CNT fibers in polymer matrix and unleash the dormant extraordinary mechanical properties of CNTs in CNT-polymer nanocomposites. Inspired by the outstanding adhesion, dispersion, mechanical, and surface functionalization properties of crystalline nanocellulose (CNC), this paper studies the mechanical and adhesion properties of CNT wrapped by aligned cellulose chains around CNT using molecular dynamic simulations. The strength, elastic modulus, and toughness of CNT-cellulose fiber for different cellulose contents are obtained from tensile and compression tests. Additionally, the effect of adding cellulose on the surface energy, interfacial shear modulus, and strength is evaluated. The result shows that even adding a single layer cellulose wrap (≈55% content) significantly decreases the mechanical properties, however, it also dramatically enhances the adhesion energy, interfacial shear strength, and modulus. Adding more cellulose layers, subsequently, deceases and increases mechanical properties and adhesion properties, respectively. In addition, analysis of nanopapers of pristine CNT, pristine CNC, and CNT-wrapped cellulose reveals that CNT-wrapped cellulose nanopapers are strong, stiff, and tough, while for CNT and CNC either strength or toughness is compromised. This research shows that cellulose wraps provide CNT fibers with tunable mechanical properties and adhesion energy that could yield strong and tough materials due to the excellent mechanical properties of CNT and active surface and hydrogen bonding of cellulose.
机译:改善分子尺度下碳纳米管(CNT)的粘附性能可显着增强CNT纤维在聚合物基质中的分散,并释放CNT-聚合物纳米复合材料中CNT的休眠非凡力学性能。通过结晶纳米纤维素(CNC)的出色粘附,分散,机械和表面官能化性能,研究了CNT周围CNT周围CNT的对准纤维素链的机械和粘附性能,使用分子动态模拟研究。用于不同纤维素含量的CNT-纤维素纤维的强度,弹性模量和韧性是从拉伸和压缩试验中获得的。另外,评估添加纤维素对表面能,界面剪切模量和强度的影响。结果表明,甚至添加单层纤维素包装(≈55%含量)显着降低机械性能,然而,它也显着提高了粘合能量,界面剪切强度和模量。随后加入更多的纤维素层,分别取消并增加机械性能和粘合性能。此外,分析原始CNT,原始CNC和CNT包裹纤维素的纳米粉刺揭示了CNT包裹的纤维素纳米粉粉末强,硬度且坚韧,而对于CNT和CNC,强度或韧性受到损害。本研究表明,纤维素包裹物提供具有可调谐机械性能和粘合能量的CNT纤维,其由于CNT和纤维素的活性表面和氢键的优异机械性能而产生强硬的材料。

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