Cargando…

A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging

We report the first seven-dimensional quantum dynamics study for the dissociative chemisorption of H(2)O on Cu(111) using the time-dependent wave-packet approach, based on an accurate nine-dimensional potential energy surface (PES), which is newly developed by neural network fitting to ∼80 000 densi...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Tianhui, Zhang, Zhaojun, Fu, Bina, Yang, Xueming, Zhang, Dong H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5965058/
https://www.ncbi.nlm.nih.gov/pubmed/29899905
http://dx.doi.org/10.1039/c5sc03689e
_version_ 1783325287633649664
author Liu, Tianhui
Zhang, Zhaojun
Fu, Bina
Yang, Xueming
Zhang, Dong H.
author_facet Liu, Tianhui
Zhang, Zhaojun
Fu, Bina
Yang, Xueming
Zhang, Dong H.
author_sort Liu, Tianhui
collection PubMed
description We report the first seven-dimensional quantum dynamics study for the dissociative chemisorption of H(2)O on Cu(111) using the time-dependent wave-packet approach, based on an accurate nine-dimensional potential energy surface (PES), which is newly developed by neural network fitting to ∼80 000 density functional theory points. This seven-dimensional quantum model allows the examination of the influence of azimuthal angles and also the investigation of the quantitative relationship between the seven-dimensional (7D) dissociation probabilities and those results calculated by the six-dimensional (6D) model with the flat surface approximation. The reactivity strongly depends on the azimuthal rotations due to different barrier heights. Very large differences are seen between the 7D dissociation probabilities and the 6D results with fixed azimuthal angles, at different fixed sites of impact, indicating that the 6D model by neglecting the azimuthal rotation can introduce substantial errors in calculating dissociation probabilities and the 7D quantum dynamics is essential to investigate the dissociation process. A new azimuthal angle-averaging approach is proposed that the 7D dissociation probability can be well reproduced by averaging 6D results over 18 azimuthal angles, in particular in low kinetic energy regions.
format Online
Article
Text
id pubmed-5965058
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-59650582018-06-13 A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging Liu, Tianhui Zhang, Zhaojun Fu, Bina Yang, Xueming Zhang, Dong H. Chem Sci Chemistry We report the first seven-dimensional quantum dynamics study for the dissociative chemisorption of H(2)O on Cu(111) using the time-dependent wave-packet approach, based on an accurate nine-dimensional potential energy surface (PES), which is newly developed by neural network fitting to ∼80 000 density functional theory points. This seven-dimensional quantum model allows the examination of the influence of azimuthal angles and also the investigation of the quantitative relationship between the seven-dimensional (7D) dissociation probabilities and those results calculated by the six-dimensional (6D) model with the flat surface approximation. The reactivity strongly depends on the azimuthal rotations due to different barrier heights. Very large differences are seen between the 7D dissociation probabilities and the 6D results with fixed azimuthal angles, at different fixed sites of impact, indicating that the 6D model by neglecting the azimuthal rotation can introduce substantial errors in calculating dissociation probabilities and the 7D quantum dynamics is essential to investigate the dissociation process. A new azimuthal angle-averaging approach is proposed that the 7D dissociation probability can be well reproduced by averaging 6D results over 18 azimuthal angles, in particular in low kinetic energy regions. Royal Society of Chemistry 2016-03-01 2015-11-25 /pmc/articles/PMC5965058/ /pubmed/29899905 http://dx.doi.org/10.1039/c5sc03689e Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Liu, Tianhui
Zhang, Zhaojun
Fu, Bina
Yang, Xueming
Zhang, Dong H.
A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging
title A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging
title_full A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging
title_fullStr A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging
title_full_unstemmed A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging
title_short A seven-dimensional quantum dynamics study of the dissociative chemisorption of H(2)O on Cu(111): effects of azimuthal angles and azimuthal angle-averaging
title_sort seven-dimensional quantum dynamics study of the dissociative chemisorption of h(2)o on cu(111): effects of azimuthal angles and azimuthal angle-averaging
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5965058/
https://www.ncbi.nlm.nih.gov/pubmed/29899905
http://dx.doi.org/10.1039/c5sc03689e
work_keys_str_mv AT liutianhui asevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT zhangzhaojun asevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT fubina asevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT yangxueming asevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT zhangdongh asevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT liutianhui sevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT zhangzhaojun sevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT fubina sevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT yangxueming sevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging
AT zhangdongh sevendimensionalquantumdynamicsstudyofthedissociativechemisorptionofh2ooncu111effectsofazimuthalanglesandazimuthalangleaveraging