International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


Downloads: 6

Research Paper | Physics | Volume 15 Issue 9, September 2026 | Pages: 403 - 405 | India


Theoretical Analysis of the Structural Phase Transformation from B3 to B1 in AlBi Under High Pressure

Arvind Jain

Abstract: We report a phenomenological model- based calculation of pressure-induced structural phase transition of AlBi compound. Gibb?s free energy is obtained as a function of pressure by applying an effective interionic interaction potential, which includes the long range Coulomb, van der Waals (vdW) interaction and the short-range repulsive interaction upto second-neighbor ions within the Hafemeister and Flygare approach. From the present study, we predict a structural phase transition from ZnS structure (B3) to NaCl structure (B1).

Keywords: Structural phase transition, Gibbs free energy, Interionic interaction potential

How to Cite?: Arvind Jain, "Theoretical Analysis of the Structural Phase Transformation from B3 to B1 in AlBi Under High Pressure", Volume 15 Issue 9, September 2026, International Journal of Science and Research (IJSR), Pages: 403-405, https://www.ijsr.net/getabstract.php?paperid=SR26904175426, DOI: https://dx.doi.org/10.21275/SR26904175426

Download Citation: APA | MLA | BibTeX | EndNote | RefMan

Share This Research

Help this article reach readers, researchers and professionals.

Share activity is measured for research-engagement analytics. Only verified, unique public shares can support award tie-breaking.

Confirm Your Share

Enter your details so IJSR can confirm this sharing activity.

Your details are used to validate this share and protect the award process from duplicate or false activity.

Download Article PDF


Rate This Article!

Top

Confirm Your Share

Enter your details so IJSR can confirm this sharing activity.

Your details are used to validate this share and protect the award process from duplicate or false activity.