One-Step Hydrothermal Synthesis of a Porous Cu2O Film and Its Photoelectrochemical Properties

A cuprous oxide (Cu2O) film with a novel porous structure is successfully synthesized on Cu foil by using a simple hydrothermal method. A redox reaction occurs between Cu and Cu2+ in aqueous solution to form the Cu2O film. The porous structures are formed as a result of the Ostwald ripening mechanis...

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Veröffentlicht in:Chemphyschem 2013-12, Vol.14 (17), p.3971-3976
Hauptverfasser: Ji, Ran, Sun, Wendong, Chu, Ying
Format: Artikel
Sprache:eng
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Zusammenfassung:A cuprous oxide (Cu2O) film with a novel porous structure is successfully synthesized on Cu foil by using a simple hydrothermal method. A redox reaction occurs between Cu and Cu2+ in aqueous solution to form the Cu2O film. The porous structures are formed as a result of the Ostwald ripening mechanism. In addition, photoluminescence measurements indicate that the porous Cu2O film may reduce the recombination of photogenerated electrons and holes. The UV/Vis absorption property of the porous Cu2O film is better than that of the granular Cu2O film, and its high photocurrent is expected to make the porous Cu2O film more suitable for solar energy applications. Ready to roll: By using a simple hydrothermal method, a porous Cu2O film is synthesized on copper foil and exhibits a high photocurrent. The superior light‐absorption properties make the porous film suitable for solar energy applications.
ISSN:1439-4235
1439-7641
DOI:10.1002/cphc.201300735