Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media

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Standard

Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media. / Pedersen, Anders F.; Escribano, Maria Escudero; Sebok, Bela; Bodin, Anders; Paoli, Elisa; Frydendal, Rasmus; Friebel, Daniel; Stephens, Ifan E. L.; Rossmeisl, Jan; Chorkendorff, Ib; Nilsson, Anders.

I: Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical, Bind 122, Nr. 2, 2018, s. 878-887.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Pedersen, AF, Escribano, ME, Sebok, B, Bodin, A, Paoli, E, Frydendal, R, Friebel, D, Stephens, IEL, Rossmeisl, J, Chorkendorff, I & Nilsson, A 2018, 'Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media', Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical, bind 122, nr. 2, s. 878-887. https://doi.org/10.1021/acs.jpcb.7b06982

APA

Pedersen, A. F., Escribano, M. E., Sebok, B., Bodin, A., Paoli, E., Frydendal, R., Friebel, D., Stephens, I. E. L., Rossmeisl, J., Chorkendorff, I., & Nilsson, A. (2018). Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media. Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical, 122(2), 878-887. https://doi.org/10.1021/acs.jpcb.7b06982

Vancouver

Pedersen AF, Escribano ME, Sebok B, Bodin A, Paoli E, Frydendal R o.a. Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media. Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical. 2018;122(2):878-887. https://doi.org/10.1021/acs.jpcb.7b06982

Author

Pedersen, Anders F. ; Escribano, Maria Escudero ; Sebok, Bela ; Bodin, Anders ; Paoli, Elisa ; Frydendal, Rasmus ; Friebel, Daniel ; Stephens, Ifan E. L. ; Rossmeisl, Jan ; Chorkendorff, Ib ; Nilsson, Anders. / Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media. I: Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical. 2018 ; Bind 122, Nr. 2. s. 878-887.

Bibtex

@article{4cd3f5da464644338eb7ea27caf8997a,
title = "Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media",
author = "Pedersen, {Anders F.} and Escribano, {Maria Escudero} and Bela Sebok and Anders Bodin and Elisa Paoli and Rasmus Frydendal and Daniel Friebel and Stephens, {Ifan E. L.} and Jan Rossmeisl and Ib Chorkendorff and Anders Nilsson",
year = "2018",
doi = "10.1021/acs.jpcb.7b06982",
language = "English",
volume = "122",
pages = "878--887",
journal = "Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical",
issn = "1520-6106",
publisher = "American Chemical Society",
number = "2",

}

RIS

TY - JOUR

T1 - Operando XAS Study of the Surface Oxidation State on a Monolayer IrOx on RuOx and RuOx Based Nanoparticles for Oxygen Evolution in Acidic Media

AU - Pedersen, Anders F.

AU - Escribano, Maria Escudero

AU - Sebok, Bela

AU - Bodin, Anders

AU - Paoli, Elisa

AU - Frydendal, Rasmus

AU - Friebel, Daniel

AU - Stephens, Ifan E. L.

AU - Rossmeisl, Jan

AU - Chorkendorff, Ib

AU - Nilsson, Anders

PY - 2018

Y1 - 2018

U2 - 10.1021/acs.jpcb.7b06982

DO - 10.1021/acs.jpcb.7b06982

M3 - Journal article

C2 - 28980810

VL - 122

SP - 878

EP - 887

JO - Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical

JF - Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical

SN - 1520-6106

IS - 2

ER -

ID: 191277609