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Ponsoni, Jéssica Bruna, Balcerzak, Mateusz, Botta, Walter José, Felderhoff, Michael, Zepon, Guilherme (2023) A comprehensive investigation of the (Ti0.5Zr0.5)1(Fe0.33Mn0.33Cr0.33)2 multicomponent alloy for room-temperature hydrogen storage designed by computational thermodynamic tools. Journal of Materials Chemistry A, 11 (26) 14108-14118 doi:10.1039/d3ta02197a

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Reference TypeJournal (article/letter/editorial)
TitleA comprehensive investigation of the (Ti0.5Zr0.5)1(Fe0.33Mn0.33Cr0.33)2 multicomponent alloy for room-temperature hydrogen storage designed by computational thermodynamic tools
JournalJournal of Materials Chemistry A
AuthorsPonsoni, Jéssica BrunaAuthor
Balcerzak, MateuszAuthor
Botta, Walter JoséAuthor
Felderhoff, MichaelAuthor
Zepon, GuilhermeAuthor
Year2023Volume11
Issue26
PublisherRoyal Society of Chemistry (RSC)
DOIdoi:10.1039/d3ta02197aSearch in ResearchGate
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Mindat Ref. ID16509550Long-form Identifiermindat:1:5:16509550:1
GUID0
Full ReferencePonsoni, Jéssica Bruna, Balcerzak, Mateusz, Botta, Walter José, Felderhoff, Michael, Zepon, Guilherme (2023) A comprehensive investigation of the (Ti0.5Zr0.5)1(Fe0.33Mn0.33Cr0.33)2 multicomponent alloy for room-temperature hydrogen storage designed by computational thermodynamic tools. Journal of Materials Chemistry A, 11 (26) 14108-14118 doi:10.1039/d3ta02197a
Plain TextPonsoni, Jéssica Bruna, Balcerzak, Mateusz, Botta, Walter José, Felderhoff, Michael, Zepon, Guilherme (2023) A comprehensive investigation of the (Ti0.5Zr0.5)1(Fe0.33Mn0.33Cr0.33)2 multicomponent alloy for room-temperature hydrogen storage designed by computational thermodynamic tools. Journal of Materials Chemistry A, 11 (26) 14108-14118 doi:10.1039/d3ta02197a
In(2023) Journal of Materials Chemistry A Vol. 11 (26) Royal Society of Chemistry (RSC)


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