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Modeling the thermodynamics of the FeTi hydrogenation under para-equilibrium: An ab-initio and experimental study

Alvares, Ebert; Jerabek, Paul; Shang, Yuanyuan; Santhosh, Archa; Pistidda, Claudio; Wook Heo, Tae; Sundman, Bo; Dornheim, Martin

Authors

Ebert Alvares

Paul Jerabek

Yuanyuan Shang

Archa Santhosh

Claudio Pistidda

Tae Wook Heo

Bo Sundman

Professor MARTIN DORNHEIM MARTIN.DORNHEIM@NOTTINGHAM.AC.UK
THE LEVERHULME INTERNATIONAL PROFESSOR OF HYDROGEN STORAGE MATERIALS AND SYSTEMS



Abstract

FeTi-based hydrides have recently re-attracted attention as stationary hydrogen storage materials due to favorable reversibility, good sorption kinetics and relatively low costs compared to alternative intermetallic hydrides. Employing the OpenCalphad software, the thermodynamics of the (FeTi) i-x Hx (0≤x≤ 1) system were assessed as a key basis for modeling hydrogenation of FeTi-based alloys. New thermodynamic data were acquired from our experimental pressure-composition-isotherm (PCI) curves, as well as first-principles calculations utilizing density functional theory (DFT). The thermodynamic phase models were carefully selected based on critical analysis of literature information and ab-initio investigations. Key thermodynamic properties such as dissociation pressure, formation enthalpies and phase diagrams were calculated in good agreement to our performed experiments and literature-reported data. This work provides an initial perspective, which can be extended to account for higher-order thermodynamic assessments and subsequently enables the design of novel FeTi-based hydrides. In addition, the assessed thermodynamic data can serve as key inputs for kinetic models and hydride microstructure simulations.

Citation

Alvares, E., Jerabek, P., Shang, Y., Santhosh, A., Pistidda, C., Wook Heo, T., Sundman, B., & Dornheim, M. (2022). Modeling the thermodynamics of the FeTi hydrogenation under para-equilibrium: An ab-initio and experimental study. Calphad, 77, Article 102426. https://doi.org/10.1016/j.calphad.2022.102426

Journal Article Type Article
Acceptance Date Apr 12, 2022
Online Publication Date May 21, 2022
Publication Date May 21, 2022
Deposit Date Aug 5, 2024
Journal Calphad
Print ISSN 0364-5916
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 77
Article Number 102426
DOI https://doi.org/10.1016/j.calphad.2022.102426
Keywords Hydrogen storage, Metal Hydrides, Fe,Ti, DFT, Pressure-composition isotherms
Public URL https://nottingham-repository.worktribe.com/output/34872350
Publisher URL https://www.sciencedirect.com/science/article/abs/pii/S0364591622000347