Cao Xuyan, Wan Biao, Liu Hanyu, Wu Lailei, Yao Yansun, Gou Huiyang
State Key Laboratory of Metastable Materials Science and Technology, College of Material Science and Engineering, Yanshan University, Qinhuangdao 066004, China.
Key Laboratory of Material Physics, Ministry of Education, School of Physics and Microelectronics, Zhengzhou University, Zhengzhou 450001, China.
J Chem Phys. 2021 Apr 7;154(13):134708. doi: 10.1063/5.0045606.
Elemental copper and potassium are immiscible under ambient conditions. It is known that pressure is a useful tool to promote the reaction between two different elements by modifying their electronic structure significantly. Here, we predict the formation of four K-Cu compounds (KCu, KCu, KCu, and KCu) under moderate pressure through unbiased structure search and first-principles calculations. Among all predicted structures, the simulated x-ray diffraction pattern of KCu perfectly matches a K-Cu compound synthesized in 2004. Further simulations indicate that the K-Cu compounds exhibit diverse structural features with novel forms of Cu aggregations, including Cu dimers, linear and zigzag Cu chains, and Cu-centered polyhedrons. Analysis of the electronic structure reveals that Cu atoms behave as anions to accept electrons from K atoms through fully filling 4s orbitals and partially extending 4p orbitals. Covalent Cu-Cu interaction is found in these compounds, which is associated with the sp hybridizations. These results provide insights into the understanding of the phase diversity of alkali/alkaline earth and metal systems.
在环境条件下,单质铜和钾是不互溶的。众所周知,压力是通过显著改变两种不同元素的电子结构来促进它们之间反应的有用工具。在此,我们通过无偏结构搜索和第一性原理计算预测了在中等压力下四种K-Cu化合物(KCu、KCu、KCu和KCu)的形成。在所有预测结构中,KCu的模拟X射线衍射图谱与2004年合成的一种K-Cu化合物完美匹配。进一步的模拟表明,K-Cu化合物表现出多样的结构特征以及新型的铜聚集形式,包括铜二聚体、线性和锯齿状铜链以及以铜为中心的多面体。电子结构分析表明,铜原子表现为阴离子,通过完全填满4s轨道并部分扩展4p轨道从钾原子接受电子。在这些化合物中发现了共价的铜-铜相互作用,这与sp杂化有关。这些结果为理解碱金属/碱土金属与金属体系的相多样性提供了见解。