超导电性
材料科学
陶瓷
碳化物
密度泛函理论
原子轨道
拓扑(电路)
凝聚态物理
结晶学
物理
电子
冶金
化学
量子力学
数学
组合数学
作者
Lingyong Zeng,Zequan Wang,Jing Song,Gaoting Lin,Ruixin Guo,Si‐Chun Luo,Shu Guo,Kuan Li,Peifeng Yu,Chao Zhang,Wei‐Ming Guo,Jie Ma,Yusheng Hou,Huixia Luo
标识
DOI:10.1002/adfm.202301929
摘要
Abstract High‐entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sites shared by equal or near‐equal atomic ratios of multi‐principal elements. Material design and property tailoring possibilities emerge from this new class of materials. Herein, the discovery of superconductivity 2.35 K and topological properties in the (Ti 0.2 Zr 0.2 Nb 0.2 Hf 0.2 Ta 0.2 )C high‐entropy carbide ceramic (HECC) is reported, which is not observed before in any of the investigated HECC. Density functional theory calculations show that six type‐II Dirac points exist in (Ti 0.2 Zr 0.2 Nb 0.2 Hf 0.2 Ta 0.2 )C, which mainly contributed from the t 2g orbitals of transition metals and the p orbitals of C. Due to the stability of the structure, robust superconductivity (SC) under pressure in this HEC superconductor is also observed. This study expands the physical properties of HECs, which may become a new material platform for SC research, especially for studying the coupling between SC and topological physics.
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