Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation

Palladium can absorb high volumes of hydrogen, but the morphology and 3D displacements occurring during palladium hydride phase formation are not fully characterized in the literature. Here, the authors use Bragg coherent diffraction imaging to map the strain within an individual palladium nanoparti...

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Autores principales: Ana F. Suzana, Longlong Wu, Tadesse A. Assefa, Benjamin P. Williams, Ross Harder, Wonsuk Cha, Chun-Hong Kuo, Chia-Kuang Tsung, Ian K. Robinson
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e7f14a4157ce418bbb2a8b13c338728e
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spelling oai:doaj.org-article:e7f14a4157ce418bbb2a8b13c338728e2021-12-02T15:36:11ZStructure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation10.1038/s42004-021-00500-72399-3669https://doaj.org/article/e7f14a4157ce418bbb2a8b13c338728e2021-05-01T00:00:00Zhttps://doi.org/10.1038/s42004-021-00500-7https://doaj.org/toc/2399-3669Palladium can absorb high volumes of hydrogen, but the morphology and 3D displacements occurring during palladium hydride phase formation are not fully characterized in the literature. Here, the authors use Bragg coherent diffraction imaging to map the strain within an individual palladium nanoparticle before and during hydride phase transformation, identifying a characteristic displacement caused by the seed particle in the nanocrystal.Ana F. SuzanaLonglong WuTadesse A. AssefaBenjamin P. WilliamsRoss HarderWonsuk ChaChun-Hong KuoChia-Kuang TsungIan K. RobinsonNature PortfolioarticleChemistryQD1-999ENCommunications Chemistry, Vol 4, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Chemistry
QD1-999
spellingShingle Chemistry
QD1-999
Ana F. Suzana
Longlong Wu
Tadesse A. Assefa
Benjamin P. Williams
Ross Harder
Wonsuk Cha
Chun-Hong Kuo
Chia-Kuang Tsung
Ian K. Robinson
Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
description Palladium can absorb high volumes of hydrogen, but the morphology and 3D displacements occurring during palladium hydride phase formation are not fully characterized in the literature. Here, the authors use Bragg coherent diffraction imaging to map the strain within an individual palladium nanoparticle before and during hydride phase transformation, identifying a characteristic displacement caused by the seed particle in the nanocrystal.
format article
author Ana F. Suzana
Longlong Wu
Tadesse A. Assefa
Benjamin P. Williams
Ross Harder
Wonsuk Cha
Chun-Hong Kuo
Chia-Kuang Tsung
Ian K. Robinson
author_facet Ana F. Suzana
Longlong Wu
Tadesse A. Assefa
Benjamin P. Williams
Ross Harder
Wonsuk Cha
Chun-Hong Kuo
Chia-Kuang Tsung
Ian K. Robinson
author_sort Ana F. Suzana
title Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
title_short Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
title_full Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
title_fullStr Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
title_full_unstemmed Structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
title_sort structure of a seeded palladium nanoparticle and its dynamics during the hydride phase transformation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e7f14a4157ce418bbb2a8b13c338728e
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