paper

Group-9 Transition Metal Suboxides Adopting the Filled-TiNi Structure: A Class of Superconductors Exhibiting Exceptionally High Upper Critical Fields

arXiv:2111.12452 · doi:10.1021/acs.chemmater.1c02683

Abstract

The TiNi and the related -carbide structure are known to exhibit various intriguing physical properties. The TiNi structure with the cubic space group is surprisingly complex, consisting of a unit cell with 96 metal atoms. The related -carbide compounds correspond to a filled version of the TiNi structure. Here, we report on the structure and superconductivity in the -carbide type suboxides TiMO with M = Co, Rh, Ir. We have successfully synthesized all three compounds in single phase form. We find all three compounds to be type-II bulk superconductors with transition temperatures of = 2.7, 2.8, and 5.4 K, and with normalized specific heat jumps of = 1.65, 1.28, and 1.80 for TiCoO, TiRhO, and TiIrO, respectively. We find that all three superconductors, exhibit high upper-critical fields. Particularly noteworthy is TiIrO with an upper critical field of =~16.06~T, which exceeds by far the weak-coupling Pauli limit of 9.86~T. The role of the void filling light atom X has so far been uncertain for the overall physical properties of these materials. Herein, we have successfully grown single crystals of TiCo. In contrast to the metallic -carbide type suboxides TiMO, we find that TiCo displays a semimetallic behavior. Hence, the octahedral void-filling oxygen plays a crucial role for the overall physical properties, even though its effect on the crystal structure is small. Our results indicate that the design of new superconductors by incorporation of electron-acceptor atoms may in the TiNi-type structures and other materials with crystallographic void position be a promising future approach. The remarkably high upper critical fields, in this family of compounds, may furthermore spark significant future interest.

Submitted: 3. August 2021, published: 1. November 2021, Supporting Information at publisher's page: https://pubs.acs.org/doi/suppl/10.1021/acs.chemmater.1c02683/suppl_file/cm1c02683_si_001.pdf

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