Ambient-pressure superconductivity onset at 10 K and robust Tc under high pressure in TiNbTaN3 medium-entropy nitride

Fuente: arXiv
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Main Authors: Zeng, Lingyong, Wang, Jie, Liu, Hongyu, Li, Longfu, Qin, Jinjun, Li, Yucheng, Chen, Rui, Song, Jing, Hou, Yusheng, Luo, Huixia
Format: Preprint
Published: 2025
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author Zeng, Lingyong
Wang, Jie
Liu, Hongyu
Li, Longfu
Qin, Jinjun
Li, Yucheng
Chen, Rui
Song, Jing
Hou, Yusheng
Luo, Huixia
author_facet Zeng, Lingyong
Wang, Jie
Liu, Hongyu
Li, Longfu
Qin, Jinjun
Li, Yucheng
Chen, Rui
Song, Jing
Hou, Yusheng
Luo, Huixia
contents Superconductivity has been one of the focal points in medium and high-entropy alloys (MEAs-HEAs) since the first discovery of the HEA superconductor in 2014. Until now, most HEAs' superconducting transition temperature (Tc) has not exceeded 10 K. Here we report the first observation of superconductivity in a bulk medium-entropy nitride (MEN), TiNbTaN3, which shows a Tc of 10 K at ambient pressure. Notably, the electronic specific heat coefficient γ(H) exhibits nonlinear H-dependence behavior, which is similar to other well-studied multigap superconductors. Furthermore, TiNbTaN3 exhibits extraordinary pressure resilience, maintaining robust superconductivity under high-pressure conditions. Density functional theory (DFT) calculations indicate that pressure exerts a negligible impact on the electronic structures of TiNbTaN3, thereby corroborating the experimental observations. These findings not only advance our understanding of emergent phenomena in entropy-stabilized nitrides but also establish a new material platform for finding more high-Tc superconductors with combinations of 4d/5d transition metal elements and light elements, motivating further investigations into high-entropy functional ceramics for extreme environment applications.
format Preprint
id arxiv_https___arxiv_org_abs_2505_15864
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ambient-pressure superconductivity onset at 10 K and robust Tc under high pressure in TiNbTaN3 medium-entropy nitride
Zeng, Lingyong
Wang, Jie
Liu, Hongyu
Li, Longfu
Qin, Jinjun
Li, Yucheng
Chen, Rui
Song, Jing
Hou, Yusheng
Luo, Huixia
Superconductivity
Superconductivity has been one of the focal points in medium and high-entropy alloys (MEAs-HEAs) since the first discovery of the HEA superconductor in 2014. Until now, most HEAs' superconducting transition temperature (Tc) has not exceeded 10 K. Here we report the first observation of superconductivity in a bulk medium-entropy nitride (MEN), TiNbTaN3, which shows a Tc of 10 K at ambient pressure. Notably, the electronic specific heat coefficient γ(H) exhibits nonlinear H-dependence behavior, which is similar to other well-studied multigap superconductors. Furthermore, TiNbTaN3 exhibits extraordinary pressure resilience, maintaining robust superconductivity under high-pressure conditions. Density functional theory (DFT) calculations indicate that pressure exerts a negligible impact on the electronic structures of TiNbTaN3, thereby corroborating the experimental observations. These findings not only advance our understanding of emergent phenomena in entropy-stabilized nitrides but also establish a new material platform for finding more high-Tc superconductors with combinations of 4d/5d transition metal elements and light elements, motivating further investigations into high-entropy functional ceramics for extreme environment applications.
title Ambient-pressure superconductivity onset at 10 K and robust Tc under high pressure in TiNbTaN3 medium-entropy nitride
topic Superconductivity
url https://arxiv.org/abs/2505.15864