Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy

Metal-oxide nanostructures are used in a range of light-driven applications, yet the fundamentals behind their properties are poorly understood. Here the authors probe photoexcited zinc oxide nanoparticles using time-resolved X-ray spectroscopy, identifying photocatalytically-active hole traps as ox...

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Autores principales: Thomas J. Penfold, Jakub Szlachetko, Fabio G. Santomauro, Alexander Britz, Wojciech Gawelda, Gilles Doumy, Anne Marie March, Stephen H. Southworth, Jochen Rittmann, Rafael Abela, Majed Chergui, Christopher J. Milne
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/9471d52e21f84ba386f57838e0b7b505
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spelling oai:doaj.org-article:9471d52e21f84ba386f57838e0b7b5052021-12-02T14:39:06ZRevealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy10.1038/s41467-018-02870-42041-1723https://doaj.org/article/9471d52e21f84ba386f57838e0b7b5052018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-02870-4https://doaj.org/toc/2041-1723Metal-oxide nanostructures are used in a range of light-driven applications, yet the fundamentals behind their properties are poorly understood. Here the authors probe photoexcited zinc oxide nanoparticles using time-resolved X-ray spectroscopy, identifying photocatalytically-active hole traps as oxygen vacancies in the lattice.Thomas J. PenfoldJakub SzlachetkoFabio G. SantomauroAlexander BritzWojciech GaweldaGilles DoumyAnne Marie MarchStephen H. SouthworthJochen RittmannRafael AbelaMajed CherguiChristopher J. MilneNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-9 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Thomas J. Penfold
Jakub Szlachetko
Fabio G. Santomauro
Alexander Britz
Wojciech Gawelda
Gilles Doumy
Anne Marie March
Stephen H. Southworth
Jochen Rittmann
Rafael Abela
Majed Chergui
Christopher J. Milne
Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy
description Metal-oxide nanostructures are used in a range of light-driven applications, yet the fundamentals behind their properties are poorly understood. Here the authors probe photoexcited zinc oxide nanoparticles using time-resolved X-ray spectroscopy, identifying photocatalytically-active hole traps as oxygen vacancies in the lattice.
format article
author Thomas J. Penfold
Jakub Szlachetko
Fabio G. Santomauro
Alexander Britz
Wojciech Gawelda
Gilles Doumy
Anne Marie March
Stephen H. Southworth
Jochen Rittmann
Rafael Abela
Majed Chergui
Christopher J. Milne
author_facet Thomas J. Penfold
Jakub Szlachetko
Fabio G. Santomauro
Alexander Britz
Wojciech Gawelda
Gilles Doumy
Anne Marie March
Stephen H. Southworth
Jochen Rittmann
Rafael Abela
Majed Chergui
Christopher J. Milne
author_sort Thomas J. Penfold
title Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy
title_short Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy
title_full Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy
title_fullStr Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy
title_full_unstemmed Revealing hole trapping in zinc oxide nanoparticles by time-resolved X-ray spectroscopy
title_sort revealing hole trapping in zinc oxide nanoparticles by time-resolved x-ray spectroscopy
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/9471d52e21f84ba386f57838e0b7b505
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