Direct visualization of radiation-induced transformations at alkali halide–air interfaces

Halide salts exhibit complex radiation-induced reactions that are relevant in atmospheric chemistry, but detailed characterizations in high-level radiation fields are challenging to obtain. Here, the authors use a custom atomic force microscope to study alkali halide surface transformations in situ...

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Autores principales: Shawn L. Riechers, Nikolay G. Petrik, John S. Loring, Mark E. Bowden, John B. Cliff, Mark K. Murphy, Carolyn I. Pearce, Greg A. Kimmel, Kevin M. Rosso
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/958fda66e26645aa9133343a6d8d58d7
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spelling oai:doaj.org-article:958fda66e26645aa9133343a6d8d58d72021-12-02T14:21:10ZDirect visualization of radiation-induced transformations at alkali halide–air interfaces10.1038/s42004-021-00486-22399-3669https://doaj.org/article/958fda66e26645aa9133343a6d8d58d72021-04-01T00:00:00Zhttps://doi.org/10.1038/s42004-021-00486-2https://doaj.org/toc/2399-3669Halide salts exhibit complex radiation-induced reactions that are relevant in atmospheric chemistry, but detailed characterizations in high-level radiation fields are challenging to obtain. Here, the authors use a custom atomic force microscope to study alkali halide surface transformations in situ under 18 kGy/hr irradiation.Shawn L. RiechersNikolay G. PetrikJohn S. LoringMark E. BowdenJohn B. CliffMark K. MurphyCarolyn I. PearceGreg A. KimmelKevin M. RossoNature PortfolioarticleChemistryQD1-999ENCommunications Chemistry, Vol 4, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Chemistry
QD1-999
spellingShingle Chemistry
QD1-999
Shawn L. Riechers
Nikolay G. Petrik
John S. Loring
Mark E. Bowden
John B. Cliff
Mark K. Murphy
Carolyn I. Pearce
Greg A. Kimmel
Kevin M. Rosso
Direct visualization of radiation-induced transformations at alkali halide–air interfaces
description Halide salts exhibit complex radiation-induced reactions that are relevant in atmospheric chemistry, but detailed characterizations in high-level radiation fields are challenging to obtain. Here, the authors use a custom atomic force microscope to study alkali halide surface transformations in situ under 18 kGy/hr irradiation.
format article
author Shawn L. Riechers
Nikolay G. Petrik
John S. Loring
Mark E. Bowden
John B. Cliff
Mark K. Murphy
Carolyn I. Pearce
Greg A. Kimmel
Kevin M. Rosso
author_facet Shawn L. Riechers
Nikolay G. Petrik
John S. Loring
Mark E. Bowden
John B. Cliff
Mark K. Murphy
Carolyn I. Pearce
Greg A. Kimmel
Kevin M. Rosso
author_sort Shawn L. Riechers
title Direct visualization of radiation-induced transformations at alkali halide–air interfaces
title_short Direct visualization of radiation-induced transformations at alkali halide–air interfaces
title_full Direct visualization of radiation-induced transformations at alkali halide–air interfaces
title_fullStr Direct visualization of radiation-induced transformations at alkali halide–air interfaces
title_full_unstemmed Direct visualization of radiation-induced transformations at alkali halide–air interfaces
title_sort direct visualization of radiation-induced transformations at alkali halide–air interfaces
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/958fda66e26645aa9133343a6d8d58d7
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