Discovery of Cu3Pb. Journal Article uri icon

Overview

abstract

  • Materials discovery enables both realization and understanding of new, exotic, physical phenomena. An emerging approach to the discovery of novel phases is high-pressure synthesis within diamond anvil cells, thereby enabling in situ monitoring of phase formation. Now, the discovery via high-pressure synthesis of the first intermetallic compound in the Cu-Pb system, Cu3Pb is reported. Cu3Pb is notably the first structurally characterized mid- to late-first-row transition-metal plumbide. The structure of Cu3Pb can be envisioned as a direct mixture of the two elemental lattices. From this new framework, we gain insight into the structure as a function of pressure and hypothesize that the high-pressure polymorph of lead is a possible prerequisite for the formation of Cu3Pb. Crucially, electronic structure computations reveal band crossings near the Fermi level, suggesting that chemically doped Cu3Pb could be a topologically nontrivial material.

publication date

  • September 24, 2018

Date in CU Experts

  • February 1, 2026 6:06 AM

Full Author List

  • Tamerius AD; Clarke SM; Gu M; Walsh JPS; Esters M; Meng Y; Hendon CH; Rondinelli JM; Jacobsen SD; Freedman DE

author count

  • 10

Other Profiles

Electronic International Standard Serial Number (EISSN)

  • 1521-3773

Additional Document Info

start page

  • 12809

end page

  • 12813

volume

  • 57

issue

  • 39