亚稳态
超导电性
材料科学
氢
凝聚态物理
高压
物理
工程物理
量子力学
作者
Yan Yan,Chaoyang Jiang,Wen Gao,Rui Chen,Xiaodong Yang,Runru Liu,Lihua Yang,Lili Wang
标识
DOI:10.1088/1674-1056/add902
摘要
Abstract The particle swarm optimization algorithm has predicted a series of binary cadmium hydrides that could be dynamically stable at pressures between 100 GPa and 300 GPa. These low-energy phases are composed of both Cd atoms and H 2 molecules. Here, we propose a hitherto unknown metastable Cmcm -CdH 6 phase, consisting of one-dimensional zigzag graphite-like hydrogenic H 6 chains, quasimolecular H 2 units and Cd atoms, which is metallic above 290 GPa. Due to H 2 σ → Cd d donation and Cd d → H 2 σ * back-donation, the electrons occupy antibonding orbitals for both types of hydrogen atoms. This results in weakened chemical bonds in the Cmcm -CdH 6 phase via a Kubas-like mechanism, promoting the emergence of high superconductivity, which is estimated to be up to ∼ 60 K at 290 GPa. This work will inspire the search for superconductivity in materials based on group IIB hydrides under pressure.
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