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The effects of morphology and temperature on the tensile characteristics of carbon nitride nanothreads

机译:形态和温度的影响氮化碳的拉伸特征nanothreads

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Very recently synthesized carbon nitride nanothreads (CNNTs) by compressing crystalline pyridine show outperform diamond nanothreads in chemical and physical properties. Here, using first-principles-based ReaxFF molecular dynamics (MD) simulations, a comprehensive investigation on the mechanical characteristics of seven experimentally synthesized CNNTs has been performed. All CNNTs exhibit unique tensile properties that change with molecular morphology, atomic arrangement and the distribution of nitrogen in the skeleton. The CNNTs with more effective covalent bonds at cross-sections are more mechanically robust. Surprisingly, a tiny CNNT with periodic unit structures of 5(4)6(2)-cage shows extreme ductility because of the formation of a linear polymervia4-step dissociation-and-reformation of bonds at extremely low temperatures in the range of 1-15 K; however, it shows brittle failure at one cross-section with low ductility at higher temperatures similar to other CNNTs at different temperatures; this offers a feasible way to design a kind of lightweight material that can be used in ultra-low temperature conditions, for example, the harsh deep space environment. The results also show that temperature significantly affects the fracture stress and rupture strain but not the effective stiffness. The analysis of atomic bond orders and bond lengthening reveals that the unique nonlinear elasticity of CNNTs is attributed to the occurrence of local bond transformations. This study provides physical insights into the tensile characteristics of CNNTs for the design and application of CNNT-based nanostructures as multifunctional materials.
机译:最近合成碳氮化nanothreads (CNNTs)通过压缩水晶吡啶比钻石nanothreads化学和物理性质。first-principles-based ReaxFF分子动力学(MD)模拟,全面调查七的机械特性实验合成CNNTs执行。属性改变分子形态,原子排列和分布氮的骨架。有效截面的共价键更多的机械强劲。CNNT周期单元的结构5(4) 6(2)笼子里显示了极端的延性,因为一个线性polymervia4-step的形成dissociation-and-reformation的债券极低的温度在1 - 15的范围K;横截面延性较低在更高在不同的温度下类似于其他CNNTs温度;设计一种轻质材料在极低的温度条件下,用于例子,严酷的深空环境。结果还表明,温度显著影响断裂应力和断裂应变但不是有效刚度。原子债券和债券延长了订单独特的非线性CNNTs弹性归因于地方债券的出现转换。洞察的拉伸特性CNNTs的设计和应用CNNT-based纳米结构作为多功能材料。

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