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Adiga, Prajwal, Wang, Le, Wong, Cindy, Matthews, Bethany E., Bowden, Mark E., Spurgeon, Steven R., Sterbinsky, George E., Blum, Monika, Choi, Min-Ju, Tao, Jinhui, Kaspar, Tiffany C., Chambers, Scott A., Stoerzinger, Kelsey A., Du, Yingge (2023) Correlation between oxygen evolution reaction activity and surface compositional evolution in epitaxial La0.5Sr0.5Ni1−xFexO3−δ thin films. Nanoscale, 15 (3) 1119-1127 doi:10.1039/d2nr05373j

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Reference TypeJournal (article/letter/editorial)
TitleCorrelation between oxygen evolution reaction activity and surface compositional evolution in epitaxial La0.5Sr0.5Ni1−xFexO3−δ thin films
JournalNanoscale
AuthorsAdiga, PrajwalAuthor
Wang, LeAuthor
Wong, CindyAuthor
Matthews, Bethany E.Author
Bowden, Mark E.Author
Spurgeon, Steven R.Author
Sterbinsky, George E.Author
Blum, MonikaAuthor
Choi, Min-JuAuthor
Tao, JinhuiAuthor
Kaspar, Tiffany C.Author
Chambers, Scott A.Author
Stoerzinger, Kelsey A.Author
Du, YinggeAuthor
Year2023Volume15
Issue3
PublisherRoyal Society of Chemistry (RSC)
DOIdoi:10.1039/d2nr05373jSearch in ResearchGate
Generate Citation Formats
Mindat Ref. ID15673605Long-form Identifiermindat:1:5:15673605:5
GUID0
Full ReferenceAdiga, Prajwal, Wang, Le, Wong, Cindy, Matthews, Bethany E., Bowden, Mark E., Spurgeon, Steven R., Sterbinsky, George E., Blum, Monika, Choi, Min-Ju, Tao, Jinhui, Kaspar, Tiffany C., Chambers, Scott A., Stoerzinger, Kelsey A., Du, Yingge (2023) Correlation between oxygen evolution reaction activity and surface compositional evolution in epitaxial La0.5Sr0.5Ni1−xFexO3−δ thin films. Nanoscale, 15 (3) 1119-1127 doi:10.1039/d2nr05373j
Plain TextAdiga, Prajwal, Wang, Le, Wong, Cindy, Matthews, Bethany E., Bowden, Mark E., Spurgeon, Steven R., Sterbinsky, George E., Blum, Monika, Choi, Min-Ju, Tao, Jinhui, Kaspar, Tiffany C., Chambers, Scott A., Stoerzinger, Kelsey A., Du, Yingge (2023) Correlation between oxygen evolution reaction activity and surface compositional evolution in epitaxial La0.5Sr0.5Ni1−xFexO3−δ thin films. Nanoscale, 15 (3) 1119-1127 doi:10.1039/d2nr05373j
In(2023) Nanoscale Vol. 15 (3) Royal Society of Chemistry (RSC)


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