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Heterostructuring as Gateway to Electron Doping of Nickelate Superconductors

Superconductivity 2026-07-09 v1 Materials Science Strongly Correlated Electrons

Abstract

Despite enormous expenditures in the research field, the electron-doped side of nickelate superconductors remains uncharted territory. Substituting the trivalent rare-earth cations by a tetravalent one hitherto failed. Here, we demonstrate by first-principles calculations a disorder-free route to electron dope Ruddlesden-Popper nickelates. When intercalating wide-band-gap insulating layers such as LaXXO3_3 (XX=Al, Ga, Sc) into La2_2NiO4_4, the extra (LaO)+^+ layers act as electron donors, releasing carriers into the Ni-3dd orbitals. This electron doping puts La2_2NiO4_4:La2_2AlO4_4 naturally in the optimal region for dx2y2d_{x^2-y^2}-wave superconductivity with Tc_c exceeding 50 K. The same concept also allows us to electron dope La3_3Ni2_2O7_7, the superconductor in the limelight.

Keywords

Cite

@article{arxiv.2607.08553,
  title  = {Heterostructuring as Gateway to Electron Doping of Nickelate Superconductors},
  author = {Chao Deng and Motoharu Kitatani and Guiwen Jiang and Siqi Guo and Niklas Witt and Ao Zhang and Wenfeng Wu and Mi Jiang and Karsten Held and Liang Si},
  journal= {arXiv preprint arXiv:2607.08553},
  year   = {2026}
}

Comments

The main text spans 6 pages with 4 figures and 1 table, while the Supplemental Material contains 11 pages, 5 figures, and 3 tables. Accepted as an Editors' Suggestions in Physical Review Letters