超导电性
氢
非阻塞I/O
材料科学
格子(音乐)
凝聚态物理
铜酸盐
平面的
物理
化学
计算机科学
计算机图形学(图像)
催化作用
量子力学
生物化学
声学
作者
Purnima P. Balakrishnan,Dan Ferenc Segedin,L. E. Chow,Patrick Quarterman,Shin Muramoto,Mythili Surendran,Ranjan Kumar Patel,Harrison LaBollita,Grace A. Pan,Qi Song,Yang Zhang,Ismail El Baggari,Koushik Jagadish,Yu‐Tsun Shao,Berit H. Goodge,Lena F. Kourkoutis,S. Middey,Antía S. Botana,Jayakanth Ravichandran,Ariando Ariando
标识
DOI:10.1038/s41467-024-51479-3
摘要
Abstract A key open question in the study of layered superconducting nickelate films is the role that hydrogen incorporation into the lattice plays in the appearance of the superconducting state. Due to the challenges of stabilizing highly crystalline square planar nickelate films, films are prepared by the deposition of a more stable parent compound which is then transformed into the target phase via a topotactic reaction with a strongly reducing agent such as CaH 2 . Recent studies, both experimental and theoretical, have introduced the possibility that the incorporation of hydrogen from the reducing agent into the nickelate lattice may be critical for the superconductivity. In this work, we use secondary ion mass spectrometry to examine superconducting La 1− x X x NiO 2 / SrTiO 3 ( X = Ca and Sr) and Nd 6 Ni 5 O 12 / NdGaO 3 films, along with non-superconducting NdNiO 2 / SrTiO 3 and (Nd,Sr)NiO 2 / SrTiO 3 . We find no evidence for extensive hydrogen incorporation across a broad range of samples, including both superconducting and non-superconducting films. Theoretical calculations indicate that hydrogen incorporation is broadly energetically unfavorable in these systems, supporting our conclusion that extensive hydrogen incorporation is not generally required to achieve a superconducting state in layered square-planar nickelates.
科研通智能强力驱动
Strongly Powered by AbleSci AI