Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy

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Standard

Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy. / Koroidov, Sergey; Winiwarter, Anna; Diaz-morales, Oscar; Görlin, Mikaela; Halldin Stenlid, Joakim; Wang, Hsin-yi; Börner, Mia; Goodwin, Christopher Matthew; Soldemo, Markus; Pettersson, Lars Gunnar Moody; Rossmeisl, Jan; Hansson, Tony; Chorkendorff, Ib; Nilsson, Anders.

I: Catalysis Science and Technology, Bind 11, Nr. 10, 2021, s. 3347-3352.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Koroidov, S, Winiwarter, A, Diaz-morales, O, Görlin, M, Halldin Stenlid, J, Wang, H, Börner, M, Goodwin, CM, Soldemo, M, Pettersson, LGM, Rossmeisl, J, Hansson, T, Chorkendorff, I & Nilsson, A 2021, 'Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy', Catalysis Science and Technology, bind 11, nr. 10, s. 3347-3352. https://doi.org/10.1039/D0CY02134B

APA

Koroidov, S., Winiwarter, A., Diaz-morales, O., Görlin, M., Halldin Stenlid, J., Wang, H., Börner, M., Goodwin, C. M., Soldemo, M., Pettersson, L. G. M., Rossmeisl, J., Hansson, T., Chorkendorff, I., & Nilsson, A. (2021). Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy. Catalysis Science and Technology, 11(10), 3347-3352. https://doi.org/10.1039/D0CY02134B

Vancouver

Koroidov S, Winiwarter A, Diaz-morales O, Görlin M, Halldin Stenlid J, Wang H o.a. Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy. Catalysis Science and Technology. 2021;11(10):3347-3352. https://doi.org/10.1039/D0CY02134B

Author

Koroidov, Sergey ; Winiwarter, Anna ; Diaz-morales, Oscar ; Görlin, Mikaela ; Halldin Stenlid, Joakim ; Wang, Hsin-yi ; Börner, Mia ; Goodwin, Christopher Matthew ; Soldemo, Markus ; Pettersson, Lars Gunnar Moody ; Rossmeisl, Jan ; Hansson, Tony ; Chorkendorff, Ib ; Nilsson, Anders. / Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy. I: Catalysis Science and Technology. 2021 ; Bind 11, Nr. 10. s. 3347-3352.

Bibtex

@article{90b11e48037348d1bfc38c54c472fd54,
title = "Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy",
author = "Sergey Koroidov and Anna Winiwarter and Oscar Diaz-morales and Mikaela G{\"o}rlin and {Halldin Stenlid}, Joakim and Hsin-yi Wang and Mia B{\"o}rner and Goodwin, {Christopher Matthew} and Markus Soldemo and Pettersson, {Lars Gunnar Moody} and Jan Rossmeisl and Tony Hansson and Ib Chorkendorff and Anders Nilsson",
year = "2021",
doi = "10.1039/D0CY02134B",
language = "English",
volume = "11",
pages = "3347--3352",
journal = "Catalysis Science and Technology",
issn = "2044-4753",
publisher = "Royal Society of Chemistry",
number = "10",

}

RIS

TY - JOUR

T1 - Chemisorbed oxygen or surface oxides steer the selectivity in Pd electrocatalytic propene oxidation observed by operando Pd L-edge X-ray absorption spectroscopy

AU - Koroidov, Sergey

AU - Winiwarter, Anna

AU - Diaz-morales, Oscar

AU - Görlin, Mikaela

AU - Halldin Stenlid, Joakim

AU - Wang, Hsin-yi

AU - Börner, Mia

AU - Goodwin, Christopher Matthew

AU - Soldemo, Markus

AU - Pettersson, Lars Gunnar Moody

AU - Rossmeisl, Jan

AU - Hansson, Tony

AU - Chorkendorff, Ib

AU - Nilsson, Anders

PY - 2021

Y1 - 2021

U2 - 10.1039/D0CY02134B

DO - 10.1039/D0CY02134B

M3 - Journal article

VL - 11

SP - 3347

EP - 3352

JO - Catalysis Science and Technology

JF - Catalysis Science and Technology

SN - 2044-4753

IS - 10

ER -

ID: 270549087