Growth of CeO2 nanocubes showing size-dependent optical and oxygen evolution reaction behaviors

CeO2 nanocubes with average sizes of 9, 13, and 18 nm have been synthesized by preparing a slightly basic aqueous mixture of Ce(NO3)3, Na2SO4, and NH4OH and heating the solution to 100 to 150 °C in 4 or 9 h. The nanocubes possess high crystalline quality. Their band gaps decrease gradually beyond th...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2021-11, Vol.50 (42), p.15170-15175
Hauptverfasser: Shi-Hong, Wu, Chien-Hsuan Hsiao, Pei-Lun Hsieh, Xing-Fu, Huang, Huang, Michael H
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Sprache:eng
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Zusammenfassung:CeO2 nanocubes with average sizes of 9, 13, and 18 nm have been synthesized by preparing a slightly basic aqueous mixture of Ce(NO3)3, Na2SO4, and NH4OH and heating the solution to 100 to 150 °C in 4 or 9 h. The nanocubes possess high crystalline quality. Their band gaps decrease gradually beyond the quantum confinement regime from 3.57 eV to 3.45 eV with increasing particle sizes. The 9 nm CeO2 nanocubes have the most positive valence band energy and correspondingly they exhibit the best electrochemical oxygen evolution reaction activity. Since band gaps of semiconductor nanocrystals can be tuned substantially through particle size control to yield different band energies, this fact can be utilized to enhance the electrochemical and photocatalytic properties.
ISSN:1477-9226
1477-9234
DOI:10.1039/d1dt03150c