Chow S Lin Er, Luo Zhaoyang, Ariando A
Department of Physics, Faculty of Science, National University of Singapore, Singapore, Singapore.
Nature. 2025 Mar 20. doi: 10.1038/s41586-025-08893-4.
The discovery of superconductivity in the Ba-La-Cu-O system (the cuprate) in the 30 K range marked a significant breakthrough, which inspired extensive exploration of oxide-based, layered superconductors to identify electron pairing with higher critical temperatures (T). Despite recent observations of superconductivity in nickel oxide-based compounds (the nickelates), evidence of Cooper pairing above 30 K in a system that is isostructural to the cuprates, but without copper, at ambient pressure and without lattice compression has remained elusive. Here we report superconductivity with a T approaching 40 K under ambient pressure in d hole-doped, late rare earth, infinite-layer nickel oxide (Sm-Eu-Ca-Sr)NiO thin films with negligible lattice compression, supported by observations of a zero-resistance state at 31 K and the Meissner effect. The material can be synthesized with essentially no Ruddlesden-Popper-type structural defects, exhibiting ultralow resistivity of approximately 0.01 mΩ cm, and with a residual resistivity ratio of up to 10. Our findings demonstrate the potential for achieving high-temperature superconductivity using strongly correlated d-electron metal oxides beyond copper as the building blocks for superconductivity, and offering a promising platform for further exploration and understanding of high-temperature Cooper pairing.
在30K温度范围内的Ba-La-Cu-O体系(铜酸盐)中发现超导性标志着一项重大突破,这激发了人们对基于氧化物的层状超导体进行广泛探索,以确定具有更高临界温度(T)的电子配对。尽管最近在基于氧化镍的化合物(镍酸盐)中观察到了超导性,但在与铜酸盐同构、不含铜、在环境压力下且无晶格压缩的体系中,高于30K的库珀配对证据仍然难以捉摸。在此,我们报告了在环境压力下,d空穴掺杂的晚期稀土无限层氧化镍(Sm-Eu-Ca-Sr)NiO薄膜中,超导转变温度接近40K,晶格压缩可忽略不计,这一结果得到了31K零电阻态和迈斯纳效应的观测支持。该材料合成时基本不存在Ruddlesden-Popper型结构缺陷,表现出约0.01mΩ·cm的超低电阻率,剩余电阻率比高达10。我们的研究结果表明,使用强关联d电子金属氧化物而非铜作为超导的构建块来实现高温超导具有潜力,并为进一步探索和理解高温库珀配对提供了一个有前景的平台。