Developing sustainable FeTi alloys for hydrogen storage by recycling

FeTi alloys are efficient hydrogen storage mediums but their synthesis using high-purity metals poses considerable environmental sustainability concerns. Here, industrial scraps of iron and titanium are used to synthesise FeTi with high hydrogen storage capacities and tunable thermodynamic propertie...

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Main Authors: Yuanyuan Shang, Shaofei Liu, Zhida Liang, Florian Pyczak, Zhifeng Lei, Tim Heidenreich, Alexander Schökel, Ji-jung Kai, Gökhan Gizer, Martin Dornheim, Thomas Klassen, Claudio Pistidda
Format: Article
Language:English
Published: Nature Portfolio 2022-12-01
Series:Communications Materials
Online Access:https://doi.org/10.1038/s43246-022-00324-5
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author Yuanyuan Shang
Shaofei Liu
Zhida Liang
Florian Pyczak
Zhifeng Lei
Tim Heidenreich
Alexander Schökel
Ji-jung Kai
Gökhan Gizer
Martin Dornheim
Thomas Klassen
Claudio Pistidda
author_facet Yuanyuan Shang
Shaofei Liu
Zhida Liang
Florian Pyczak
Zhifeng Lei
Tim Heidenreich
Alexander Schökel
Ji-jung Kai
Gökhan Gizer
Martin Dornheim
Thomas Klassen
Claudio Pistidda
author_sort Yuanyuan Shang
collection DOAJ
description FeTi alloys are efficient hydrogen storage mediums but their synthesis using high-purity metals poses considerable environmental sustainability concerns. Here, industrial scraps of iron and titanium are used to synthesise FeTi with high hydrogen storage capacities and tunable thermodynamic properties.
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spelling doaj.art-d631e25e79644aefb02971dbc020ff8a2022-12-25T12:23:22ZengNature PortfolioCommunications Materials2662-44432022-12-013111210.1038/s43246-022-00324-5Developing sustainable FeTi alloys for hydrogen storage by recyclingYuanyuan Shang0Shaofei Liu1Zhida Liang2Florian Pyczak3Zhifeng Lei4Tim Heidenreich5Alexander Schökel6Ji-jung Kai7Gökhan Gizer8Martin Dornheim9Thomas Klassen10Claudio Pistidda11Department of Materials Design, Institute of Hydrogen Technology, Helmholtz-Zentrum hereon GmbHDepartment of Mechanical Engineering, City University of Hong KongDepartment of Metal Physics, Institute of Materials Physics, Helmholtz-Zentrum hereon GmbHDepartment of Metal Physics, Institute of Materials Physics, Helmholtz-Zentrum hereon GmbHCollege of Materials Science and Engineering, Hunan UniversityDepartment of Materials Design, Institute of Hydrogen Technology, Helmholtz-Zentrum hereon GmbHDeutsches Elektronen-Synchrotron DESYDepartment of Mechanical Engineering, City University of Hong KongDepartment of Materials Design, Institute of Hydrogen Technology, Helmholtz-Zentrum hereon GmbHDepartment of Materials Design, Institute of Hydrogen Technology, Helmholtz-Zentrum hereon GmbHDepartment of Materials Design, Institute of Hydrogen Technology, Helmholtz-Zentrum hereon GmbHDepartment of Materials Design, Institute of Hydrogen Technology, Helmholtz-Zentrum hereon GmbHFeTi alloys are efficient hydrogen storage mediums but their synthesis using high-purity metals poses considerable environmental sustainability concerns. Here, industrial scraps of iron and titanium are used to synthesise FeTi with high hydrogen storage capacities and tunable thermodynamic properties.https://doi.org/10.1038/s43246-022-00324-5
spellingShingle Yuanyuan Shang
Shaofei Liu
Zhida Liang
Florian Pyczak
Zhifeng Lei
Tim Heidenreich
Alexander Schökel
Ji-jung Kai
Gökhan Gizer
Martin Dornheim
Thomas Klassen
Claudio Pistidda
Developing sustainable FeTi alloys for hydrogen storage by recycling
Communications Materials
title Developing sustainable FeTi alloys for hydrogen storage by recycling
title_full Developing sustainable FeTi alloys for hydrogen storage by recycling
title_fullStr Developing sustainable FeTi alloys for hydrogen storage by recycling
title_full_unstemmed Developing sustainable FeTi alloys for hydrogen storage by recycling
title_short Developing sustainable FeTi alloys for hydrogen storage by recycling
title_sort developing sustainable feti alloys for hydrogen storage by recycling
url https://doi.org/10.1038/s43246-022-00324-5
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