High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces

The mechanisms of gold nanorelief formation on van der Waals surfaces of semiconductor single crystals were investigated using high-resolution scanning tunneling microscopy (STM). Gold was deposited onto the GaSe (0001) surface by vacuum thermal evaporation without substrate cooling or the use of in...

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Datum:2011
Hauptverfasser: Karbivskyy Volodymyr, Smolyak Svitlana
Weitere Verfasser: Smolyak, Svitlana
Format: Data
Sprache:Englisch
Veröffentlicht: DataverseUA 2011
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Online Zugang:https://doi.org/10.48788/DVUA/HUMFAM
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Назва журналу:Open Data Repository of the National Academy of Sciences of Ukraine

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Open Data Repository of the National Academy of Sciences of Ukraine
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author Karbivskyy Volodymyr
Smolyak Svitlana
author2 Smolyak, Svitlana
author_facet Smolyak, Svitlana
Karbivskyy Volodymyr
Smolyak Svitlana
author_sort Karbivskyy Volodymyr
collection DSpace
description The mechanisms of gold nanorelief formation on van der Waals surfaces of semiconductor single crystals were investigated using high-resolution scanning tunneling microscopy (STM). Gold was deposited onto the GaSe (0001) surface by vacuum thermal evaporation without substrate cooling or the use of inert gases. The obtained STM images reveal the morphology and growth features of the resulting gold nanostructures, providing insight into the processes governing their nucleation and surface diffusion.
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spelling doi-10-48788-DVUA-HUMFAM2026-06-13T02:00:01ZHigh-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaceshttps://doi.org/10.48788/DVUA/HUMFAMKarbivskyy VolodymyrSmolyak SvitlanaDataverseUAThe mechanisms of gold nanorelief formation on van der Waals surfaces of semiconductor single crystals were investigated using high-resolution scanning tunneling microscopy (STM). Gold was deposited onto the GaSe (0001) surface by vacuum thermal evaporation without substrate cooling or the use of inert gases. The obtained STM images reveal the morphology and growth features of the resulting gold nanostructures, providing insight into the processes governing their nucleation and surface diffusion.PhysicsMonolayer metal structuresSingle-crystalsScanning tunnelling microscopyScanning tunnelling microscopyen2011Smolyak, SvitlanaSPM&RS Centre, G.V. Kurdyumov Institute for Metal Physics NAS of UkraineKarbivskyy Volodymyr; Svitlana Smolyak, 2024, "STM data: Gold Nanoreliefs on Van der Waals Surfaces of InSe Semiconductor Single Crystals Obtained by High-Resolution Scanning Tunneling Microscopy Methods", https://doi.org/10.48788/DVUA/BCG5WO, DataverseUA, V1Data
spellingShingle Physics
Monolayer metal structures
Single-crystals
Scanning tunnelling microscopy
Scanning tunnelling microscopy
Karbivskyy Volodymyr
Smolyak Svitlana
High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces
title High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces
title_full High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces
title_fullStr High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces
title_full_unstemmed High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces
title_short High-Resolution STM Study of Gold Nanostructures Formed on GaSe Single Crystal Surfaces
title_sort high resolution stm study of gold nanostructures formed on gase single crystal surfaces
topic Physics
Monolayer metal structures
Single-crystals
Scanning tunnelling microscopy
Scanning tunnelling microscopy
url https://doi.org/10.48788/DVUA/HUMFAM
work_keys_str_mv AT karbivskyyvolodymyr highresolutionstmstudyofgoldnanostructuresformedongasesinglecrystalsurfaces
AT smolyaksvitlana highresolutionstmstudyofgoldnanostructuresformedongasesinglecrystalsurfaces