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原子层状氮化硼的力学性能及层间相互作用的作用。

Mechanical properties of atomically thin boron nitride and the role of interlayer interactions.

机构信息

Institute for Frontier Materials, Deakin University, Geelong Waurn Ponds Campus, Waurn Ponds, Victoria 3216, Australia.

School of Mathematics and Physics, Queen's University Belfast, Belfast BT7 1NN, UK.

出版信息

Nat Commun. 2017 Jun 22;8:15815. doi: 10.1038/ncomms15815.

Abstract

Atomically thin boron nitride (BN) nanosheets are important two-dimensional nanomaterials with many unique properties distinct from those of graphene, but investigation into their mechanical properties remains incomplete. Here we report that high-quality single-crystalline mono- and few-layer BN nanosheets are one of the strongest electrically insulating materials. More intriguingly, few-layer BN shows mechanical behaviours quite different from those of few-layer graphene under indentation. In striking contrast to graphene, whose strength decreases by more than 30% when the number of layers increases from 1 to 8, the mechanical strength of BN nanosheets is not sensitive to increasing thickness. We attribute this difference to the distinct interlayer interactions and hence sliding tendencies in these two materials under indentation. The significantly better interlayer integrity of BN nanosheets makes them a more attractive candidate than graphene for several applications, for example, as mechanical reinforcements.

摘要

原子级薄的氮化硼(BN)纳米片是一种重要的二维纳米材料,具有许多独特的性质,与石墨烯不同,但对其力学性能的研究仍不完整。在这里,我们报告说,高质量的单晶单原子层和少层 BN 纳米片是最强的电绝缘材料之一。更有趣的是,在压痕下,少层 BN 表现出与少层石墨烯完全不同的力学行为。与强度在层数从 1 层增加到 8 层时降低超过 30%的石墨烯形成鲜明对比的是,BN 纳米片的机械强度对厚度的增加并不敏感。我们将这种差异归因于这两种材料在压痕下的层间相互作用和滑动趋势的明显不同。BN 纳米片的层间完整性显著提高,使它们比石墨烯更适合于一些应用,例如作为机械增强材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80be/5489686/e1ba5ee23d16/ncomms15815-f1.jpg

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