English

High-entropy silicide superconductors with W$_{5}$Si$_{3}$-type structure

Superconductivity 2023-02-03 v1 Materials Science

Abstract

We report the synthesis, crystal structure and physical properties of two new high-entropy silicides (HESs), namely (Nb0.1_{0.1}Mo0.3_{0.3}W0.3_{0.3}Re0.2_{0.2}Ru0.1_{0.1})5_{5}Si3_{3} and (Nb0.2_{0.2}Mo0.3_{0.3}W0.3_{0.3}Re0.1_{0.1}Ru0.1_{0.1})5_{5}Si3_{3}. Structural analysis indicates that both HESs consist of a (nearly) single tetragonal W5_{5}Si3_{3}-type phase (space group II4/mcmmcm) with a disordered cation distribution. Electrical resistivity, magnetic susceptibility and specific heat measurements show that (Nb0.1_{0.1}Mo0.3_{0.3}W0.3_{0.3}Re0.2_{0.2}Ru0.1_{0.1})5_{5}Si3_{3} and (Nb0.2_{0.2}Mo0.3_{0.3}W0.3_{0.3}Re0.1_{0.1}Ru0.1_{0.1})5_{5}Si3_{3} are weakly coupled bulk superconductors, which represent the first superconducting high-entropy nonoxide ceramics. In particular, these HESs have higher TcT_{\rm c} values (3.2-3.3 K) compared with those of the binary counterparts, and their Bc2B_{\rm c2}(0)/TcT_{\rm c} ratios are the largest among superconductors of the same structural type.

Keywords

Cite

@article{arxiv.2302.00844,
  title  = {High-entropy silicide superconductors with W$_{5}$Si$_{3}$-type structure},
  author = {Bin Liu and Wuzhang Yang and Guorui Xiao and Qinqing Zhu and Shijie Song and Guang-Han Cao and Zhi Ren},
  journal= {arXiv preprint arXiv:2302.00844},
  year   = {2023}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-28T08:29:49.689Z