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A novel metastable structure and superconductivity of hydrogen-rich compound CdH6 under pressure

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【作者】 闫岩蒋成澳高稳陈蕊杨晓东刘润茹杨丽华王丽丽

【Author】 Yan Yan;Chengao Jiang;Wen Gao;Rui Chen;Xiaodong Yang;Runru Liu;Lihua Yang;Lili Wang;School of Materials Science and Engineering, Changchun University;Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Key Laboratory of Preparation and Application of Environmental Friendly Materials, College of Physics, Jilin Normal University;

【通讯作者】 闫岩;

【机构】 School of Materials Science and Engineering, Changchun UniversityKey Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Key Laboratory of Preparation and Application of Environmental Friendly Materials, College of Physics, Jilin Normal University

【摘要】 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 H2 molecules. Here, we propose a hitherto unknown metastable Cmcm-CdH6 phase, consisting of one-dimensional zigzag graphite-like hydrogenic H6 chains, quasimolecular H2 units and Cd atoms, which is metallic above 290 GPa. Due to H2 σ→ Cd d donation and Cd d → H2 σ* back-donation, the electrons occupy antibonding orbitals for both types of hydrogen atoms. This results in weakened chemical bonds in the Cmcm-CdH6 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.

【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 H2 molecules. Here, we propose a hitherto unknown metastable Cmcm-CdH6 phase, consisting of one-dimensional zigzag graphite-like hydrogenic H6 chains, quasimolecular H2 units and Cd atoms, which is metallic above 290 GPa. Due to H2 σ→ Cd d donation and Cd d → H2 σ* back-donation, the electrons occupy antibonding orbitals for both types of hydrogen atoms. This results in weakened chemical bonds in the Cmcm-CdH6 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.

【基金】 Project supported by the Jilin Provincial Natural Science Foundation (Grant No. 20230101183JC);the Center for Computational Research at Jilin Province
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2025年08期
  • 【分类号】O469
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