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Nanoceria dissolution at acidic pH by breaking off the catalytic loop.


ABSTRACT: This manuscript proves the reproducibility and robustness of cerium oxide nanoparticles, nanoceria, employed as a chemical reagent with oxidizing capacity (as an electron sink) at acidic pH. Unlike nanoceria multi-enzyme-mimetic capabilities at neutral or high pH, nanoceria can behave as a stoichiometric reagent at low pH where insoluble Ce4+ ions transform into soluble Ce3+ in the nanocrystal that finally dissolves. This behaviour can be interpreted as enzyme-like when nanoceria is in excess with respect to the substrate. Under these conditions, the Ce3+/Ce4+ ratio in the NPs can easily be estimated by titration with ferrocyanide. This procedure could become a rapid assessment tool for evaluating nanoceria capacity in liquid environments.

SUBMITTER: Galyamin D 

PROVIDER: S-EPMC9536484 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Nanoceria dissolution at acidic pH by breaking off the catalytic loop.

Galyamin Dmitry D   Ernst Lena M LM   Fitó-Parera Aina A   Mira-Vidal Guillem G   Bastús Neus G NG   Sabaté Neus N   Puntes Victor V  

Nanoscale 20221006 38


This manuscript proves the reproducibility and robustness of cerium oxide nanoparticles, nanoceria, employed as a chemical reagent with oxidizing capacity (as an electron sink) at acidic pH. Unlike nanoceria multi-enzyme-mimetic capabilities at neutral or high pH, nanoceria can behave as a stoichiometric reagent at low pH where insoluble Ce<sup>4+</sup> ions transform into soluble Ce<sup>3+</sup> in the nanocrystal that finally dissolves. This behaviour can be interpreted as enzyme-like when nan  ...[more]

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