等结构
化学
超导电性
金属
Atom(片上系统)
密度泛函理论
结晶学
氢化物
合金
航程(航空)
凝聚态物理
大气温度范围
二进制数
过渡金属
电子结构
热力学
作者
Masashi W. Kimura,Seong Won Jang,Nisha Geng,Eva Zurek
标识
DOI:10.1021/acs.inorgchem.6c02106
摘要
High-pressure superhydrides have attracted much attention due to their high superconducting critical temperatures (Tcs). Our density functional theory (DFT) calculations, focusing on YCaHn (n = 8-20) compositions, found a number of nearly isoenthalpic YCaH8 phases, differing only in the arrangement of the metal atoms, suggesting the potential stability of metal alloy superhydrides. The computed Tcs of the considered YCaH8 phases were higher than those of the isostructural I4/mmm MH4 parent compounds. DFT enthalpies suggested that YCaH12 could also be disordered; however, the Tcs of the ordered variants spanned a wide range from 105 to 253 K at 200 GPa, showing that alloying could either mildly enhance or drastically reduce Tc from that of the Im3̅m MH6 parents. For YCaH18 and YCaH20, only a single dynamically stable ordered superhydride was found, which we attribute to the differences in the structures of the most stable MH9 and MH10 binary hydride parents.
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