Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening

Large lateral sized two-dimensional (2-D) colloidal nanocrystals with a uniform thickness are highly desired but difficult to prepare. Herein we demonstrated that colloidal copper (I) sulfide (Cu1.75S) nanoplates with an large lateral dimension, i.e. 200 nm to 1 µm, can be successfully produced from...

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Main Authors: Wang, A., Hu, X., Wang, F., Chen, W., Pang, Y., Javaid, S., Chen, D., Li, X., Staaden, L., Jia, Guohua
Format: Journal Article
Published: Elsevier BV 2019
Online Access:http://purl.org/au-research/grants/arc/DE160100589
http://hdl.handle.net/20.500.11937/72314
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author Wang, A.
Hu, X.
Wang, F.
Chen, W.
Pang, Y.
Javaid, S.
Chen, D.
Li, X.
Staaden, L.
Jia, Guohua
author_facet Wang, A.
Hu, X.
Wang, F.
Chen, W.
Pang, Y.
Javaid, S.
Chen, D.
Li, X.
Staaden, L.
Jia, Guohua
author_sort Wang, A.
building Curtin Institutional Repository
collection Online Access
description Large lateral sized two-dimensional (2-D) colloidal nanocrystals with a uniform thickness are highly desired but difficult to prepare. Herein we demonstrated that colloidal copper (I) sulfide (Cu1.75S) nanoplates with an large lateral dimension, i.e. 200 nm to 1 µm, can be successfully produced from small Cu2-xS nanoplates via an Ostwald ripening process. The availability of the large lateral sized Cu2-xS nanoplates produced through this approach not only sheds light on the construction of 2-D nanostructures of other systems but also provides a platform for the cation exchange reaction to generate a variety of 2-D nanoplates with large lateral dimensions.
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institution Curtin University Malaysia
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last_indexed 2025-11-14T10:52:00Z
publishDate 2019
publisher Elsevier BV
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spelling curtin-20.500.11937-723142022-09-07T01:45:37Z Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening Wang, A. Hu, X. Wang, F. Chen, W. Pang, Y. Javaid, S. Chen, D. Li, X. Staaden, L. Jia, Guohua Large lateral sized two-dimensional (2-D) colloidal nanocrystals with a uniform thickness are highly desired but difficult to prepare. Herein we demonstrated that colloidal copper (I) sulfide (Cu1.75S) nanoplates with an large lateral dimension, i.e. 200 nm to 1 µm, can be successfully produced from small Cu2-xS nanoplates via an Ostwald ripening process. The availability of the large lateral sized Cu2-xS nanoplates produced through this approach not only sheds light on the construction of 2-D nanostructures of other systems but also provides a platform for the cation exchange reaction to generate a variety of 2-D nanoplates with large lateral dimensions. 2019 Journal Article http://hdl.handle.net/20.500.11937/72314 10.1016/j.matlet.2018.11.087 http://purl.org/au-research/grants/arc/DE160100589 Elsevier BV restricted
spellingShingle Wang, A.
Hu, X.
Wang, F.
Chen, W.
Pang, Y.
Javaid, S.
Chen, D.
Li, X.
Staaden, L.
Jia, Guohua
Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening
title Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening
title_full Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening
title_fullStr Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening
title_full_unstemmed Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening
title_short Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening
title_sort large lateral sized two-dimensional cu2-xs nanoplates formed by ostwald ripening
url http://purl.org/au-research/grants/arc/DE160100589
http://hdl.handle.net/20.500.11937/72314