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The structure and dynamics of boron nitride nanoscrolls

机译:氮化硼纳米卷的结构和动力学

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Carbon nanoscrolls (CNSs) are structures formed by rolling up graphene layers into a scroll-like shape. CNNs have been experimentally produced by different groups. Boron nitride nanoscrolls (BNNSs) are similar structures using boron nitride instead of graphene layers. In this paper we report molecular mechanics and molecular dynamics results for the structural and dynamical aspects of BNNS formation. Similarly to CNS, BNNS formation is dominated by two major energy contributions, the increase in the elastic energy and the energetic gain due to van der Waals interactions of the overlapping surface of the rolled layers. The armchair scrolls are the most stable configuration while zigzag scrolls are metastable structures which can be thermally converted to armchairs. Chiral scrolls are unstable and tend to evolve into zigzag or armchair configurations depending on their initial geometries. The possible experimental routes to produce BNNSs are also addressed.
机译:碳纳米卷(CNS)是通过将石墨烯层卷成卷状而形成的结构。 CNN已由不同的小组通过实验产生。氮化硼纳米卷(BNNS)是使用氮化硼代替石墨烯层的相似结构。在本文中,我们报告了BNNS形成的结构和动力学方面的分子力学和分子动力学结果。与CNS相似,BNNS的形成主要受两个主要的能量贡献所致,即弹性能的增加和轧制层重叠表面的范德华相互作用引起的能量增益。扶手椅涡旋是最稳定的配置,而之字形涡旋是亚稳结构,可以热转换为扶手椅。手性涡旋是不稳定的,并且取决于其初始几何形状,往往会演变成锯齿形或扶手椅形。还讨论了生产BNNS的可能实验路线。

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