材料科学
复合材料
穆利肯种群分析
共价键
兴奋剂
微观结构
复合数
极限抗拉强度
密度泛函理论
Atom(片上系统)
电荷密度
粘结强度
人口
碳纳米管
化学键
碳纤维
阳极连接
态密度
制作
键能
粘结长度
掺杂剂
拉伸试验
钛
分子动力学
累积滚焊
作者
Bochen Zhang,Xianhui Wang,Zhen Li,Hongbo Zhang,Lei Wang,Yu Jin
标识
DOI:10.1002/adem.202501349
摘要
To disclose the effect of doping Ti and Cr elements on the interface bonding of carbon nanotubes (CNTs)/Cu composites, the CNTs/Cu, Ti‐doped CNTs/Cu, and Cr‐doped CNTs/Cu composites are prepared by powder metallurgy. The microstructure is characterized and the mechanical properties are tested. Moreover, the interface bonding energy, interfacial stability, charge density difference, density of states, and Mulliken bond population of the studied composites are calculated by first principles, and the interfacial bonding mechanism is discussed as well. The results show that the Ti and Cr elements are enriched at the interface between Cu and CNT. The tensile strength of Ti‐doped CNT/Cu and Cr‐doped CNT/Cu composites is, respectively, increased by 35.5% and 20.4% as compared to CNTs/Cu composites. Density functional theory reveals that after doping Ti and Cr atom, the interfacial bonding energy ( E b ) increases to −5.668 and −5.662 eV/atom, respectively. The density of states, charge density difference, and Mulliken bond population analysis indicate that the strong covalent bonds of TiC and CrC formed between doped atom and CNT contribute to the enhancement of interfacial bonding strength and interfacial stability of CNT/Cu. The research is of great significance for the design and fabrication of CNT/Cu composite with better performance.
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