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Enhancing photoelectrochemical water splitting with plasmonic Au nanoparticles

Title
Enhancing photoelectrochemical water splitting with plasmonic Au nanoparticles
Authors
Moon, Cheon WooChoi, Min-JuHyun, Jerome KarthamJang, Ho Won
Ewha Authors
현가담
SCOPUS Author ID
현가담scopus
Issue Date
2021
Journal Title
NANOSCALE ADVANCES
ISSN
2516-0230JCR Link
Citation
NANOSCALE ADVANCES vol. 3, no. 21, pp. 5981 - 6006
Publisher
ROYAL SOC CHEMISTRY
Indexed
SCIE; SCOPUS WOS
Document Type
Review
Abstract
The water-based renewable chemical energy cycle has attracted interest due to its role in replacing existing non-renewable resources and alleviating environmental issues. Utilizing the semi-infinite solar energy source is the most appropriate way to sustain such a water-based energy cycle by producing and feeding hydrogen and oxygen. For production, an efficient photoelectrode is required to effectively perform the photoelectrochemical water splitting reaction. For this purpose, appropriately engineered nanostructures can be introduced into the photoelectrode to enhance light-matter interactions for efficient generation and transport of charges and activation of surface chemical reactions. Plasmon enhanced photoelectrochemical water splitting, whose performance can potentially exceed classical efficiency limits, is of great importance in this respect. Plasmonic gold nanoparticles are widely accepted nanomaterials for such applications because they possess high chemical stability, efficiently absorb visible light unlike many inorganic oxides, and enhance light-matter interactions with localized plasmon relaxation processes. However, our understanding of the physical phenomena behind these particles is still not complete. This review paper focuses on understanding the interfacial phenomena between gold nanoparticles and semiconductors and provides a summary and perspective of recent studies on plasmon enhanced photoelectrochemical water splitting using gold nanoparticles.
DOI
10.1039/d1na00500f
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자연과학대학 > 화학·나노과학전공 > Journal papers
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