# Phonon instability and structural phase transition in Vanadium under   high pressure

**Authors:** Ashok K. Verma, P. Modak

arXiv: 0704.0696 · 2009-11-13

## TL;DR

This study uses first-principles calculations to predict complex pressure-induced structural phase transitions and phonon instabilities in vanadium, revealing unique behavior not observed in neighboring group-VB metals.

## Contribution

It provides the first detailed prediction of a multi-stage phase transition sequence in vanadium under high pressure using ab initio methods.

## Key findings

- Vanadium undergoes a BCC to rhombohedral transition at 60 GPa.
- Vanadium's BCC phase becomes unstable at around 112 GPa.
- No similar transitions are observed in Nb and Ta.

## Abstract

Results of the first-principles calculations are presented for the group-VB metals V, Nb and Ta up to couple of megabar pressure. An unique structural phase transition sequence BCC-->(at 60 GPa) rhombohedral (angle=110.5 degree)-->(at ~ 160 GPa)rhombohedral(angle=108.5 degree)--> (at ~ 430 GPa) BCC is predicted in V. We also find that BCC-V becomes mechanically and vibrationally unstable at around 112 GPa pressure. Similar transitions are absent in Nb and Ta.

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Source: https://tomesphere.com/paper/0704.0696