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Epitaxial Core/Shell Nanocrystals of (Europium-Doped) Zirconia and Hafnia.


ABSTRACT: A careful design of the nanocrystal architecture can strongly enhance the nanocrystal function. So far, this strategy has faced a synthetic bottleneck in the case of refractory oxides. Here we demonstrate the epitaxial growth of hafnia shells onto zirconia cores and pure zirconia shells onto europium-doped zirconia cores. The core/shell structures are fully crystalline. Upon shelling, the optical properties of the europium dopant are dramatically improved (featuring a more uniform coordination and a longer photoluminescence lifetime), indicating the suppression of nonradiative pathways. These results launch the stable zirconium and hafnium oxide hosts as alternatives for the established NaYF4 systems.

SUBMITTER: Seno C 

PROVIDER: S-EPMC11295171 | biostudies-literature | 2024 Jul

REPOSITORIES: biostudies-literature

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Epitaxial Core/Shell Nanocrystals of (Europium-Doped) Zirconia and Hafnia.

Seno Carlotta C   Reichholf Nico N   Salutari Francesco F   Spadaro Maria Chiara MC   Ivanov Yurii P YP   Divitini Giorgio G   Gogos Alexander A   Herrmann Inge K IK   Arbiol Jordi J   Smet Philippe F PF   De Roo Jonathan J  

Journal of the American Chemical Society 20240722 30


A careful design of the nanocrystal architecture can strongly enhance the nanocrystal function. So far, this strategy has faced a synthetic bottleneck in the case of refractory oxides. Here we demonstrate the epitaxial growth of hafnia shells onto zirconia cores and pure zirconia shells onto europium-doped zirconia cores. The core/shell structures are fully crystalline. Upon shelling, the optical properties of the europium dopant are dramatically improved (featuring a more uniform coordination a  ...[more]

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