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Mechanical properties of hollow and water-filled graphyne nanotube and carbon nanotube hybrid structure

机译:中空填充石墨膜纳米管和碳纳米管杂交结构的力学性能

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摘要

By performing molecular dynamics simulations, a GNT/CNT hybrid structure constructed via combing (6, 6) graphyne nanotube (GNT) with (6, 6) carbon nanotube (CNT) has been designed and investigated. The mechanical properties induced by the percentage of GNT, water content and electric field were examined. Calculation results reveal that the fracture strain and strength of hollow hybrid structure are remarkably smaller than that of perfect (6, 6) CNT. In addition, the Young's modulus decreases monotonously with the increase of percentage of GNT. More importantly, the tunable mechanical properties of hybrid structure can be achieved through filling with water molecules and applying an electric field along tensile direction. Specifically, increasing water content from 0.0 to 8.70 mmol g(-1) in the absence of electric field could result in fracture strain and strength reducing by 15.09% and 12.87%, respectively. Besides, enhancing fracture strain and strength of water-filled hybrid structure with water content of 8.70 mmol g(-1) can also be obtained with rising electric field intensity. These findings would provide a valuable theoretical basis for designing and fabricating a nanodevice with controllable mechanical performances.
机译:通过进行分子动力学模拟,设计并研究了通过梳理(6,6)碳纳米管(GNT)构成的GNT / CNT杂合结构,其具有(6,6)碳纳米管(CNT)。检查了GNT,含水含量和电场百分比诱导的机械性能。计算结果表明,中空混合结构的断裂应变和强度比完美(6,6)CNT的裂缝应变和强度值得注目。此外,随着GNT百分比的增加,杨氏模量单调。更重要的是,通过用水分子填充并沿拉伸方向施加电场,可以实现混合结构的可调谐机械性能。具体地,在没有电场的情况下,将含水量从0.0至8.70mmol G(-1)增加可能导致断裂菌株和强度分别降低15.09%和12.87%。此外,还可以获得具有8.70mmol G(-1)的水含量的裂缝应变和水填充杂合结构的强度,并且电场强度上升。这些发现者将为具有可控机械性能的设计和制造纳米型的设计和制造纳米尾的理论依据提供了有价值的理论依据。

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