论文标题
混合CBN纳米管的高速影响
High-velocity impact of hybrid CBN nanotube
论文作者
论文摘要
极端条件下的纳米材料可以以完全不同的方式行为。例如,高速影响可以通过碳或氮化碳纳米管解压缩而无需任何化学方法而产生纳米容器。尽管杂交纳米结构已被用来创建更强的结构,但在极端条件下对这些材料的研究很少。在这项工作中,我们研究了在高速影响下,研究实验合成的杂化综合造成的CBN纳米管(硝酸硼和碳纳米管)在高速影响下。我们的结果表明,弹性和脆性材料的组合可以产生不同的结构,例如纳米骨和氮化硼原子链。这些结果可能会对新纳米结构的生产产生重大影响。
Nanomaterials under extreme conditions can behave in a completely different manner. High-velocity impact, for example, can produce nanoribbons without any chemical approach via carbon or boron nitride nanotubes unzipping. Although hybrid nanostructures have been used to create stronger structures, few studies on these materials under extreme conditions have been employed. In this work, we study an experimentally synthesized hybrid doubled walled CBN nanotube (boron nitride and carbon nanotubes concentrically assembled) under high-velocity impact. Our results show that the combination of elastic and brittle materials can produce different structures, such as nanoribbons and boron nitride atomic chains. These results can have a significant impact on the production of new nanostructures.