Bimodal growth of Au on SrTiO3 (001)

We have investigated the vapor phase growth of Au on SrTiO3 (001)-(2x1) substrates by UHV scanning tunneling microscopy. Submonolayer (ML) coverages below 300°C wet the surface as disordered metastable 2D islands. Beyond 0.75 ML fcc nanocrystals with a (111) interface are nucleated and ripen by dewe...

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Hauptverfasser: Silly, F, Castell, M
Format: Journal article
Sprache:English
Veröffentlicht: American Physical Society 2006
Schlagworte:
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author Silly, F
Castell, M
author_facet Silly, F
Castell, M
author_sort Silly, F
collection OXFORD
description We have investigated the vapor phase growth of Au on SrTiO3 (001)-(2x1) substrates by UHV scanning tunneling microscopy. Submonolayer (ML) coverages below 300°C wet the surface as disordered metastable 2D islands. Beyond 0.75 ML fcc nanocrystals with a (111) interface are nucleated and ripen by dewetting the surrounding layer. Some multiply twinned fivefold symmetric clusters are also created. Above 400°C dewetting occurs for all coverages and the surface is only populated by nanocrystals and fivefold clusters. A planar ground state configuration for small Au clusters and a higher interface energy for crystals than for wetted 2D ML films explains these results.
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spelling oxford-uuid:016d9289-305d-4e4c-bca3-a67d4c04a88d2022-03-26T08:34:53ZBimodal growth of Au on SrTiO3 (001)Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:016d9289-305d-4e4c-bca3-a67d4c04a88dSurface nanoscienceMaterials SciencesEnglishOxford University Research Archive - ValetAmerican Physical Society2006Silly, FCastell, MWe have investigated the vapor phase growth of Au on SrTiO3 (001)-(2x1) substrates by UHV scanning tunneling microscopy. Submonolayer (ML) coverages below 300°C wet the surface as disordered metastable 2D islands. Beyond 0.75 ML fcc nanocrystals with a (111) interface are nucleated and ripen by dewetting the surrounding layer. Some multiply twinned fivefold symmetric clusters are also created. Above 400°C dewetting occurs for all coverages and the surface is only populated by nanocrystals and fivefold clusters. A planar ground state configuration for small Au clusters and a higher interface energy for crystals than for wetted 2D ML films explains these results.
spellingShingle Surface nanoscience
Materials Sciences
Silly, F
Castell, M
Bimodal growth of Au on SrTiO3 (001)
title Bimodal growth of Au on SrTiO3 (001)
title_full Bimodal growth of Au on SrTiO3 (001)
title_fullStr Bimodal growth of Au on SrTiO3 (001)
title_full_unstemmed Bimodal growth of Au on SrTiO3 (001)
title_short Bimodal growth of Au on SrTiO3 (001)
title_sort bimodal growth of au on srtio3 001
topic Surface nanoscience
Materials Sciences
work_keys_str_mv AT sillyf bimodalgrowthofauonsrtio3001
AT castellm bimodalgrowthofauonsrtio3001