dc.contributor.advisor | AL-Kamali, M. F. S. H. | |
dc.contributor.author | Ghanem, Kh. A. D. | |
dc.coverage.spatial | Гомель | ru_RU |
dc.date.accessioned | 2024-05-16T12:39:20Z | |
dc.date.available | 2024-05-16T12:39:20Z | |
dc.date.issued | 2024 | |
dc.identifier.citation | Ghanem, Kh. A. D. Enhancement of photocatalytic activities toward chemical and electrochemical reactions in au nanostructures [mini review] [Электронный ресурс] / Kh. A. D. Ghanem ; scientific supervisor M. F. S. H. AL-Kamali // E.R.A – Современная наука: электроника, робототехника, автоматизация : материалы I Междунар. науч.-техн. конф, студентов, аспирантов и молодых ученых, Гомель, 29 фев. 2024 г. / Гомел. гос. техн. ун-т им. П. О. Сухого [и др.] ; под общ. ред. А. А. Бойко. – Гомель : ГГТУ им. П. О. Сухого, 2024. – C. 32–34. | ru_RU |
dc.identifier.uri | https://elib.gstu.by/handle/220612/34681 | |
dc.description.abstract | This mini report provides an overview of the recent advancements in enhancing the
photocatalytic activities of gold (Au) nanostructures for chemical and electrochemical reactions.
Au nanostructures have gained significant attention as promising photocatalysts due to their unique plasmonic properties and high catalytic activity. The report discusses strategies employed to
enhance their photocatalytic performance, including size and shape control, surface modification,
and hybridization with other materials. The underlying mechanisms and key factors influencing the
photocatalytic activities of Au nanostructures are also explored. Furthermore, the report highlights
the applications of Au nanostructures in various photocatalytic reactions, such as water splitting,
carbon dioxide reduction, and organic pollutant degradation. The findings emphasize the potential
of Au nanostructures as efficient photocatalysts and provide insights into recent advances in this
field. | ru_RU |
dc.language.iso | en | ru_RU |
dc.publisher | ГГТУ им. П.О. Сухого | ru_RU |
dc.subject | Photocatalysis | ru_RU |
dc.subject | Gold nanostructures | ru_RU |
dc.subject | Plasmonic properties | ru_RU |
dc.subject | Catalytic activity | ru_RU |
dc.subject | Surface modification | ru_RU |
dc.subject | Hybrid materials | ru_RU |
dc.subject | Water splitting | ru_RU |
dc.subject | Carbon dioxide reduction | ru_RU |
dc.subject | Organic pollutant degradation | ru_RU |
dc.title | Enhancement of photocatalytic activities toward chemical and electrochemical reactions in au nanostructures [mini review] | ru_RU |
dc.type | Article | ru_RU |