Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation

At the nanoscale, elastic strain and crystal defects largely influence the properties and functionalities of materials. Here, the authors report an unusual twin boundary migration process in a single platinum nanoparticle during carbon monoxide oxidation using Bragg coherent diffraction imaging.

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Autores principales: Jérôme Carnis, Aseem Rajan Kshirsagar, Longfei Wu, Maxime Dupraz, Stéphane Labat, Michaël Texier, Luc Favre, Lu Gao, Freddy E. Oropeza, Nimrod Gazit, Ehud Almog, Andrea Campos, Jean-Sébastien Micha, Emiel J. M. Hensen, Steven J. Leake, Tobias U. Schülli, Eugen Rabkin, Olivier Thomas, Roberta Poloni, Jan P. Hofmann, Marie-Ingrid Richard
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/b6237b171e9d41d7a4f095cf50460597
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spelling oai:doaj.org-article:b6237b171e9d41d7a4f095cf504605972021-12-02T19:12:27ZTwin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation10.1038/s41467-021-25625-02041-1723https://doaj.org/article/b6237b171e9d41d7a4f095cf504605972021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25625-0https://doaj.org/toc/2041-1723At the nanoscale, elastic strain and crystal defects largely influence the properties and functionalities of materials. Here, the authors report an unusual twin boundary migration process in a single platinum nanoparticle during carbon monoxide oxidation using Bragg coherent diffraction imaging.Jérôme CarnisAseem Rajan KshirsagarLongfei WuMaxime DuprazStéphane LabatMichaël TexierLuc FavreLu GaoFreddy E. OropezaNimrod GazitEhud AlmogAndrea CamposJean-Sébastien MichaEmiel J. M. HensenSteven J. LeakeTobias U. SchülliEugen RabkinOlivier ThomasRoberta PoloniJan P. HofmannMarie-Ingrid RichardNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jérôme Carnis
Aseem Rajan Kshirsagar
Longfei Wu
Maxime Dupraz
Stéphane Labat
Michaël Texier
Luc Favre
Lu Gao
Freddy E. Oropeza
Nimrod Gazit
Ehud Almog
Andrea Campos
Jean-Sébastien Micha
Emiel J. M. Hensen
Steven J. Leake
Tobias U. Schülli
Eugen Rabkin
Olivier Thomas
Roberta Poloni
Jan P. Hofmann
Marie-Ingrid Richard
Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation
description At the nanoscale, elastic strain and crystal defects largely influence the properties and functionalities of materials. Here, the authors report an unusual twin boundary migration process in a single platinum nanoparticle during carbon monoxide oxidation using Bragg coherent diffraction imaging.
format article
author Jérôme Carnis
Aseem Rajan Kshirsagar
Longfei Wu
Maxime Dupraz
Stéphane Labat
Michaël Texier
Luc Favre
Lu Gao
Freddy E. Oropeza
Nimrod Gazit
Ehud Almog
Andrea Campos
Jean-Sébastien Micha
Emiel J. M. Hensen
Steven J. Leake
Tobias U. Schülli
Eugen Rabkin
Olivier Thomas
Roberta Poloni
Jan P. Hofmann
Marie-Ingrid Richard
author_facet Jérôme Carnis
Aseem Rajan Kshirsagar
Longfei Wu
Maxime Dupraz
Stéphane Labat
Michaël Texier
Luc Favre
Lu Gao
Freddy E. Oropeza
Nimrod Gazit
Ehud Almog
Andrea Campos
Jean-Sébastien Micha
Emiel J. M. Hensen
Steven J. Leake
Tobias U. Schülli
Eugen Rabkin
Olivier Thomas
Roberta Poloni
Jan P. Hofmann
Marie-Ingrid Richard
author_sort Jérôme Carnis
title Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation
title_short Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation
title_full Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation
title_fullStr Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation
title_full_unstemmed Twin boundary migration in an individual platinum nanocrystal during catalytic CO oxidation
title_sort twin boundary migration in an individual platinum nanocrystal during catalytic co oxidation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/b6237b171e9d41d7a4f095cf50460597
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