
NZMat4H2Sto
TiFe from NZ Resources
Sep 2022 – Oct 2025
Coordinator · BMBF (Germany) · 400 k€ · grant 03SF0691
About this project
Generating hydrogen storage materials from New Zealand ilmenite and iron sand resources.
Related publications
Role of Elemental Substitution on Hydrogen Incorporation in Characteristic Ti/Fe-Based Oxides
A. J. E. Rowberg, S. Kang, K. Sellschopp, P. Jerabek, T. W. Heo, B. C. Wood
ACS Appl. Energy Mater. 2026, 9, 1242–1253. · doi:10.1021/acsaem.5c03738 ·
@article{Rowberg2026c,
author = {A. J. E. Rowberg and S. Kang and K. Sellschopp and P. Jerabek and T. W. Heo and B. C. Wood},
title = {{Role of Elemental Substitution on Hydrogen Incorporation in Characteristic Ti/Fe-Based Oxides}},
journal = {ACS Appl. Energy Mater.},
year = {2026},
volume = {9},
pages = {1242–1253},
doi = {10.1021/acsaem.5c03738},
}Predicting hydrogen storage capacity loss of FeTi by ab initio thermodynamic modelling of Fe–Ti–Si phase equilibria
L. Dinachandran, E. Alvares, K. Sellschopp, T. Klassen, P. Jerabek, A. L. Garden
Acta Mater. 2025, 301, 121514. · doi:10.1016/j.actamat.2025.121514 ·
@article{Dinachandran2025c,
author = {L. Dinachandran and E. Alvares and K. Sellschopp and T. Klassen and P. Jerabek and A. L. Garden},
title = {{Predicting hydrogen storage capacity loss of FeTi by ab initio thermodynamic modelling of Fe–Ti–Si phase equilibria}},
journal = {Acta Mater.},
year = {2025},
volume = {301},
pages = {121514},
doi = {10.1016/j.actamat.2025.121514},
}High Ionic Conduction in Rb- and Cs-Mixed Cation Amide for Energy Storageopen access
T. T. Le, K. Sellschopp, F. Murgia, A. L. Garden, S. Bordignon, J. P. Embs, M. R. Chierotti, A. Schökel, F. Karimi, P. Jerabek, T. Klassen, C. Pistidda
Small 2025, 2502943. · doi:10.1002/smll.202502943 ·
@article{Le2025b,
author = {T. T. Le and K. Sellschopp and F. Murgia and A. L. Garden and S. Bordignon and J. P. Embs and M. R. Chierotti and A. Schökel and F. Karimi and P. Jerabek and T. Klassen and C. Pistidda},
title = {{High Ionic Conduction in Rb- and Cs-Mixed Cation Amide for Energy Storage}},
journal = {Small},
year = {2025},
pages = {2502943},
doi = {10.1002/smll.202502943},
}A Thermodynamic Approach to Model Multicomponent FeTi-based Alloys for Hydrogen Storageopen access
E. Alvares, A. J. E. Rowberg, K. Sellschopp, B. C. Wood, T. Klassen, P. Jerabek, C. Pistidda
Scr. Mater. 2025, 259, 116516. · doi:10.1016/j.scriptamat.2024.116516 ·
@article{Alvares2025a,
author = {E. Alvares and A. J. E. Rowberg and K. Sellschopp and B. C. Wood and T. Klassen and P. Jerabek and C. Pistidda},
title = {{A Thermodynamic Approach to Model Multicomponent FeTi-based Alloys for Hydrogen Storage}},
journal = {Scr. Mater.},
year = {2025},
volume = {259},
pages = {116516},
doi = {10.1016/j.scriptamat.2024.116516},
}Multiscale modeling of metal-hydride interphases—quantification of decoupled chemo-mechanical energiesopen access
E. Alvares, K. Sellschopp, B. Wang, S. Kang, T. Klassen, T. W. Heo, T. Klassen, P. Jerabek, C. Pistidda
npj Comput. Mater. 2024, 10, 249. · doi:10.1038/s41524-024-01424-1 ·
@article{Anon2024c,
author = {E. Alvares and K. Sellschopp and B. Wang and S. Kang and T. Klassen and T. W. Heo and T. Klassen and P. Jerabek and C. Pistidda},
title = {{Multiscale modeling of metal-hydride interphases—quantification of decoupled chemo-mechanical energies}},
journal = {npj Comput. Mater.},
year = {2024},
volume = {10},
pages = {249},
doi = {10.1038/s41524-024-01424-1},
}