Bulk superconductivity up to 96 K in pressurized nickelate single crystals
Abstract
Recently, the Ruddlesden-Popper bilayer nickelate has emerged as a superconductor with a transition temperature () of approximately 80 K above 14 GPa (Refs. 1-3). Achieving higher in nickelate superconductors, along with the synthesis of reproducible high-quality single crystals without relying on high-oxygen-pressure growth conditions, remains a significant challenge. Here we report superconductivity up to 96 K under high pressure in bilayer nickelate single crystals synthesized at ambient pressure. Energy-dispersive spectroscopy, single-crystal X-ray diffraction, nuclear quadrupole resonance and scanning transmission electron microscopy evidenced high crystal quality of the flux-grown single crystals. exhibits clear bulk superconductivity, including zero resistivity ( = 92 K and = 73 K at 21.6 GPa) and the Meissner effect (= 60 K at 20.6 GPa). A low-temperature high-pressure structural study indicates that both monoclinic and tetragonal structures can support superconductivity in this bilayer nickelate. Furthermore, we established a correlation between higher under high pressures and larger in-plane lattice distortion under ambient conditions, corroborated by observing even higher of 96 K in . This study overcomes key limitations in growing nickelate superconductor crystals, resolves the crystal structure in the superconducting state and demonstrates an effective pathway towards achieving higher .
Cite
@article{arxiv.2501.14584,
title = {Bulk superconductivity up to 96 K in pressurized nickelate single crystals},
author = {Feiyu Li and Zhenfang Xing and Di Peng and Jie Dou and Ning Guo and Liang Ma and Yulin Zhang and Lingzhen Wang and Jun Luo and Jie Yang and Jian Zhang and Tieyan Chang and Yu-Sheng Chen and Weizhao Cai and Jinguang Cheng and Yuzhu Wang and Yuxin Liu and Tao Luo and Naohisa Hirao and Takahiro Matsuoka and Hirokazu Kadobayashi and Zhidan Zeng and Qiang Zheng and Rui Zhou and Qiaoshi Zeng and Xutang Tao and Junjie Zhang},
journal= {arXiv preprint arXiv:2501.14584},
year = {2026}
}
Comments
Main text, figures and tables have been updated in the final version published at Nature