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- 01H8JQZ2PFP803G7P2NGPX327C classification C1.
- 01H8JQZ2PFP803G7P2NGPX327C date "2023".
- 01H8JQZ2PFP803G7P2NGPX327C language "eng".
- 01H8JQZ2PFP803G7P2NGPX327C type conference.
- 01H8JQZ2PFP803G7P2NGPX327C hasPart 01H8JR4FJRRGX7VXSGXVVGAC5S.pdf.
- 01H8JQZ2PFP803G7P2NGPX327C hasPart urn:uuid:d93cee49-1665-4237-925a-bf12a4b75124.
- 01H8JQZ2PFP803G7P2NGPX327C subject "Chemistry".
- 01H8JQZ2PFP803G7P2NGPX327C subject "Earth and Environmental Sciences".
- 01H8JQZ2PFP803G7P2NGPX327C doi "10.11159/rtese23.119".
- 01H8JQZ2PFP803G7P2NGPX327C issn "2561-1089".
- 01H8JQZ2PFP803G7P2NGPX327C presentedAt urn:uuid:8cc02672-5aa0-45f6-8135-104b0b4c4dc4.
- 01H8JQZ2PFP803G7P2NGPX327C abstract "The state-of-the-art nanotechnologies ensure the establishment of sustainable green systems for CO2 conversion. Recently, plasmonic two-dimensional (2D) nanostructures are found as effective platforms for efficient visible light-assisted photocatalysis. The plasmonic nanodomains grown on the surface of advanced 2D semiconductor materials represent a new class of hybrid nanostructures. These 2D hybrid nanostructures activate supplementary mechanisms at material heterointerfaces enabling a wide range of solar-activated physic-chemical reactions. Here, the controlled growth of plasmonic crystalline silver (Ag) nanodomains on the 2D surface oxide films of liquid Ga-based nanoparticles enabled the efficient CO2 conversion through combined photocatalysis and acoustic-activated technique. Driven by acoustic energy, the multiple contribution of Ga2O3-Ag semiconductor/plasmonic hybrid 2D heterointerfaces enabled the visible-light assisted hot-electron generation at 2D plasmonic hybridinterfaces and therefore rose the CO2 conversion efficiency to values higher than 94.6%. The inherent plasmonic characteristics of developed 2D nanojunction assembly accompanied by the commercial availability of acoustic activated technologies depict promising future for efficient and sustainable CO2 conversion in industrial levels.".
- 01H8JQZ2PFP803G7P2NGPX327C author 0383d53f-886a-11ec-be8a-cb690c227c64.
- 01H8JQZ2PFP803G7P2NGPX327C author 1691148C-4207-11E5-8B23-0205B5D1D7B1.
- 01H8JQZ2PFP803G7P2NGPX327C author E18AE612-251F-11E6-9733-1E97B5D1D7B1.
- 01H8JQZ2PFP803G7P2NGPX327C dateCreated "2023-08-24T03:03:50Z".
- 01H8JQZ2PFP803G7P2NGPX327C dateModified "2024-10-29T16:24:21Z".
- 01H8JQZ2PFP803G7P2NGPX327C name "Efficient and sustainable room-temperature CO2 conversion by plasmonic two-dimensional metal-oxide hybrid nano-interfaces".
- 01H8JQZ2PFP803G7P2NGPX327C pagination urn:uuid:a15882e3-84de-4c93-a391-982bff427a59.
- 01H8JQZ2PFP803G7P2NGPX327C sameAs LU-01H8JQZ2PFP803G7P2NGPX327C.
- 01H8JQZ2PFP803G7P2NGPX327C sourceOrganization urn:uuid:08da1773-6fb6-4a2f-8aa5-f29536224c0c.
- 01H8JQZ2PFP803G7P2NGPX327C sourceOrganization urn:uuid:76faaab4-57ef-47f1-b08d-9aaa125c6eeb.
- 01H8JQZ2PFP803G7P2NGPX327C type C1.