| Literature DB >> 32071213 |
Steven D Conradson1,2, Theodore H Geballe3,4,5, Andrea Gauzzi6, Maarit Karppinen7, Changqing Jin8,9,10, Gianguido Baldinozzi11, Wenmin Li8, Lipeng Cao8, Edmondo Gilioli12, Jack M Jiang4,5, Matthew Latimer13, Oliver Mueller13, Venera Nasretdinova14.
Abstract
A common characteristic of many "overdoped" cuprates prepared with high-pressure oxygen is T c values ≥ 50 K that often exceed that of optimally doped parent compounds, despite O stoichiometries that place the materials at the edge or outside of the conventional boundary between superconducting and normal Fermi liquid states. X-ray absorption fine-structure (XAFS) measurements at 52 K on samples of high-pressure oxygen (HPO) YSr2Cu2.75Mo0.25O7.54, T c = 84 K show that the Mo is in the (VI) valence in an unusually undistorted octahedral geometry with predominantly Mo neighbors that is consistent with its assigned substitution for Cu in the chain sites of the structure. Perturbations of the Cu environments are minimal, although the Cu X-ray absorption near-edge structure (XANES) differs from that in other cuprates. The primary deviation from the crystal structure is therefore nanophase separation into Mo- and Cu-enriched domains. There are, however, indications that the dynamical attributes of the structure are altered relative to YBa2Cu3O7, including a shift of the Cu-apical O two-site distribution from the chain to the plane Cu sites. Another effect that would influence T c is the possibility of multiple bands at the Fermi surface caused by the presence of the second phase and the lowering of the Fermi level.Entities:
Keywords: cuprates; high-pressure oxygen; local structure; overdoped
Year: 2020 PMID: 32071213 PMCID: PMC7060693 DOI: 10.1073/pnas.1918704117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205