paper

New Superconductors in the PtPbBi Structure Type

arXiv:2606.26258 · doi:10.1021/acs.chemmater.6c01826

Abstract

The quest for new superconductors is of both fundamental and technological importance. Recently, an artificial intelligence method correctly predicted PtPbBi to be a superconductor. In this work, we find superconductivity in the newly synthesized PbBi ( = Au, Pd, and Rh), of which PtPbBi is a member. When = Ni, whose radius is considerably smaller, the structure instead collapses into the different, Pb-substituted NiBi type. Interestingly, the stoichiometric parameter shifts across the three compounds to keep the total valence electron count close to 20 per formula unit. The superconducting transitions occur at 4.9, 4.2, and 3.4 K, for = Au, Pd, and Rh, respectively. Using electrical resistivity, magnetization, and specific heat measurements, we establish the bulk nature of the superconducting state and determine the critical fields, characteristic length scales, and anisotropy ratios. All three compounds are moderately anisotropic type-II superconductors, with modest upper critical field anisotropies of to . These results establish PbBi as a family of anisotropic superconductors and a platform for studying how site disorder and Pb-Bi mixing govern superconductivity in heavy-element intermetallics.

22+10 pages, 5+11 figures

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