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Enhanced Artificial Enzyme Activities on the Reconstructed Sawtoothlike Nanofacets of Pure and Pr-Doped Ceria Nanocubes.


ABSTRACT: In this work, a simple one-step thermal oxidation process was established to achieve a significant surface increase in {110} and {111} nanofacets on well-defined, pure and Pr-doped, ceria nanocubes. More importantly, without changing most of the bulk properties, this treatment leads to a remarkable boost of their enzymatic activities: from the oxidant (oxidase-like) to antioxidant (hydroxyl radical scavenging) as well as the paraoxon degradation (phosphatase-like) activities. Such performance improvement might be due to the thermally generated sawtoothlike {111} nanofacets and defects, which facilitate the oxygen mobility and the formation of oxygen vacancies on the surface. Finally, possible mechanisms of nanoceria as artificial enzymes have been proposed in this manuscript. Considering the potential application of ceria as artificial enzymes, this thermal treatment may enable the future design of highly efficient nanozymes without changing the bulk composition.

SUBMITTER: Jiang L 

PROVIDER: S-EPMC8674880 | biostudies-literature | 2021 Aug

REPOSITORIES: biostudies-literature

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Enhanced Artificial Enzyme Activities on the Reconstructed Sawtoothlike Nanofacets of Pure and Pr-Doped Ceria Nanocubes.

Jiang Lei L   Tinoco Miguel M   Fernández-García Susana S   Sun Yujiao Y   Traviankina Mariia M   Nan Pengli P   Xue Qi Q   Pan Huiyan H   Aguinaco Almudena A   González-Leal Juan M JM   Blanco Ginesa G   Blanco Eduardo E   Hungría Ana B AB   Calvino Jose J JJ   Chen Xiaowei X  

ACS applied materials & interfaces 20210809 32


In this work, a simple one-step thermal oxidation process was established to achieve a significant surface increase in {110} and {111} nanofacets on well-defined, pure and Pr-doped, ceria nanocubes. More importantly, without changing most of the bulk properties, this treatment leads to a remarkable boost of their enzymatic activities: from the oxidant (oxidase-like) to antioxidant (hydroxyl radical scavenging) as well as the paraoxon degradation (phosphatase-like) activities. Such performance im  ...[more]

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