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氢在镍酸盐超导电性中的关键作用。

Critical role of hydrogen for superconductivity in nickelates.

机构信息

School of Physics, University of Electronic Science and Technology of China, Chengdu, China.

Diamond Light Source, Harwell Campus, Didcot, UK.

出版信息

Nature. 2023 Mar;615(7950):50-55. doi: 10.1038/s41586-022-05657-2. Epub 2023 Mar 1.

Abstract

The newly discovered nickelate superconductors so far only exist in epitaxial thin films synthesized by a topotactic reaction with metal hydrides. This method changes the nickelates from the perovskite to an infinite-layer structure by deintercalation of apical oxygens. Such a chemical reaction may introduce hydrogen (H), influencing the physical properties of the end materials. Unfortunately, H is insensitive to most characterization techniques and is difficult to detect because of its light weight. Here, in optimally Sr doped NdSrNiOH epitaxial films, secondary-ion mass spectroscopy shows abundant H existing in the form of NdSrNiOH (x ≅ 0.2-0.5). Zero resistivity is found within a very narrow H-doping window of 0.22 ≤ x ≤ 0.28, showing unequivocally the critical role of H in superconductivity. Resonant inelastic X-ray scattering demonstrates the existence of itinerant interstitial s (IIS) orbitals originating from apical oxygen deintercalation. Density functional theory calculations show that electronegative H occupies the apical oxygen sites annihilating IIS orbitals, reducing the IIS-Ni 3d orbital hybridization. This leads the electronic structure of H-doped NdSrNiOH to be more two-dimensional-like, which might be relevant for the observed superconductivity. We highlight that H is an important ingredient for superconductivity in epitaxial infinite-layer nickelates.

摘要

新发现的镍酸盐超导体迄今为止仅存在于通过金属氢化物的拓扑反应合成的外延薄膜中。这种方法通过去层间氧将镍酸盐从钙钛矿转变为无限层结构。这种化学反应可能会引入氢(H),从而影响最终材料的物理性质。不幸的是,由于 H 很轻,大多数特性测试技术对其都不敏感,且难以检测。在最佳 Sr 掺杂的 NdSrNiOH 外延薄膜中,二次离子质谱显示,大量 H 以 NdSrNiOH(x≅0.2-0.5)的形式存在。在 0.22≤x≤0.28 的非常窄的 H 掺杂窗口内发现了零电阻,这明确表明 H 在超导性中起着关键作用。共振非弹性 X 射线散射证明了来自氧去层间的巡游间隙 s(IIS)轨道的存在。密度泛函理论计算表明,电负性 H 占据了顶氧位,消除了 IIS 轨道,减少了 IIS-Ni 3d 轨道杂化。这使得掺 H 的 NdSrNiOH 的电子结构更具有二维特性,这可能与观察到的超导性有关。我们强调,H 是外延无限层镍酸盐超导性的重要组成部分。

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