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Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy

The charge state of Au nanoclusters on oxidized/reduced rutile TiO(2) (110) surfaces were investigated by a combination of non-contact atomic force microscopy and Kelvin probe force microscopy at 78 K under ultra-high vacuum. We found that the Au nanoclusters supported on oxidized/reduced surfaces h...

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Autores principales: Adachi, Yuuki, Wen, Huan Fei, Zhang, Quanzhen, Miyazaki, Masato, Sugawara, Yasuhiro, Li, Yan Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419554/
https://www.ncbi.nlm.nih.gov/pubmed/36133366
http://dx.doi.org/10.1039/c9na00776h
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author Adachi, Yuuki
Wen, Huan Fei
Zhang, Quanzhen
Miyazaki, Masato
Sugawara, Yasuhiro
Li, Yan Jun
author_facet Adachi, Yuuki
Wen, Huan Fei
Zhang, Quanzhen
Miyazaki, Masato
Sugawara, Yasuhiro
Li, Yan Jun
author_sort Adachi, Yuuki
collection PubMed
description The charge state of Au nanoclusters on oxidized/reduced rutile TiO(2) (110) surfaces were investigated by a combination of non-contact atomic force microscopy and Kelvin probe force microscopy at 78 K under ultra-high vacuum. We found that the Au nanoclusters supported on oxidized/reduced surfaces had a relatively positive/negative charge state, respectively, compared with the substrate. In addition, the distance dependence of LCPD verified the contrast observed in the KPFM images. The physical background of charge transfer observation can be explained by the model of charge attachment/detachment from multiple oxygen vacancies/adatoms surrounding Au nanoclusters. These results suggest that the electronic properties of the Au nanoclusters are dramatically influenced by the condition of the support used.
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spelling pubmed-94195542022-09-20 Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy Adachi, Yuuki Wen, Huan Fei Zhang, Quanzhen Miyazaki, Masato Sugawara, Yasuhiro Li, Yan Jun Nanoscale Adv Chemistry The charge state of Au nanoclusters on oxidized/reduced rutile TiO(2) (110) surfaces were investigated by a combination of non-contact atomic force microscopy and Kelvin probe force microscopy at 78 K under ultra-high vacuum. We found that the Au nanoclusters supported on oxidized/reduced surfaces had a relatively positive/negative charge state, respectively, compared with the substrate. In addition, the distance dependence of LCPD verified the contrast observed in the KPFM images. The physical background of charge transfer observation can be explained by the model of charge attachment/detachment from multiple oxygen vacancies/adatoms surrounding Au nanoclusters. These results suggest that the electronic properties of the Au nanoclusters are dramatically influenced by the condition of the support used. RSC 2020-03-25 /pmc/articles/PMC9419554/ /pubmed/36133366 http://dx.doi.org/10.1039/c9na00776h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Adachi, Yuuki
Wen, Huan Fei
Zhang, Quanzhen
Miyazaki, Masato
Sugawara, Yasuhiro
Li, Yan Jun
Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy
title Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy
title_full Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy
title_fullStr Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy
title_full_unstemmed Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy
title_short Elucidating the charge state of an Au nanocluster on the oxidized/reduced rutile TiO(2) (110) surface using non-contact atomic force microscopy and Kelvin probe force microscopy
title_sort elucidating the charge state of an au nanocluster on the oxidized/reduced rutile tio(2) (110) surface using non-contact atomic force microscopy and kelvin probe force microscopy
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419554/
https://www.ncbi.nlm.nih.gov/pubmed/36133366
http://dx.doi.org/10.1039/c9na00776h
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