Pressure-Induced Phase Transitions in Cr-Based Nitride Electrides

Abstract Density functional theory calculations were used to investigate pressure-induced structural phase transitions in the nitride electrides Sr3CrN3 and Ba3CrN3 with nominally Cr4+ (d2 configuration) cations. At ambient conditions, both compounds crystallize in the hexagonal P63/m structure and undergo a transition to the orthorhombic Cmcm phase near 9 GPa (Sr) and 10 GPa (Ba). This transition is driven by the collapse of the one-dimensional electride channel upon mechanical activation, inducing the solid-state redox reaction:Sr2Cr3IVN3:e−→Sr2Cr3IIIN3. In Sr3CrN3, the transition is accompanied by reduction of diamagnetic Cr4+ (S = 0) to a low-spin Cr3+ (S = 1/2) paramagnetic state. At higher pressures, Sr3CrN3 becomes a zero-gap insulator and then a semimetal. By contrast, Ba3CrN3 displays three-dimensional metallic and nonmagnetic character at the P63/m → Cmcm transition. Our results demonstrate mechanical control over the electronic structure of inorganic electrides.

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Publication Details

Journal
Inorganic Chemistry
Published
2026-09-28
DOI
https://doi.org/10.1021/acs.inorgchem.6c01095
Primary Topic
Ammonia Synthesis and Nitrogen Reduction
Type
article
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Pressure-Induced Phase Transitions in Cr-Based Nitride Electrides

Danilo Puggioni, James M. Rondinelli, Dawson M. Smith, Danna E. Freedman et al.
Inorganic Chemistry
Ammonia Synthesis and Nitrogen Reduction
article

Pressure-Induced Phase Transitions in Cr-Based Nitride Electrides

Danilo Puggioni, James M. Rondinelli, Dawson M. Smith, Danna E. Freedman, Jacob A. Lafferty
article en

Abstract

Abstract Density functional theory calculations were used to investigate pressure-induced structural phase transitions in the nitride electrides Sr3CrN3 and Ba3CrN3 with nominally Cr4+ (d2 configuration) cations. At ambient conditions, both compounds crystallize in the hexagonal P63/m structure and undergo a transition to the orthorhombic Cmcm phase near 9 GPa (Sr) and 10 GPa (Ba). This transition is driven by the collapse of the one-dimensional electride channel upon mechanical activation, inducing the solid-state redox reaction:Sr2Cr3IVN3:e−→Sr2Cr3IIIN3. In Sr3CrN3, the transition is accompanied by reduction of diamagnetic Cr4+ (S = 0) to a low-spin Cr3+ (S = 1/2) paramagnetic state. At higher pressures, Sr3CrN3 becomes a zero-gap insulator and then a semimetal. By contrast, Ba3CrN3 displays three-dimensional metallic and nonmagnetic character at the P63/m → Cmcm transition. Our results demonstrate mechanical control over the electronic structure of inorganic electrides.

Inorganic Chemistry
Northwestern University (US), Northwestern University (PH), Massachusetts Institute of Technology (US)
Affordable and clean energy
Openalex Percentile: Top 33%
Ammonia Synthesis and Nitrogen Reduction
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Pressure-Induced Phase Transitions in Cr-Based Nitride Electrides — Danilo Puggioni, James M. Rondinelli, et al. · Inorganic Chemistry (2026) | TGRS Research Map | TGRS