Elucidating the catalytic mechanism of Prussian blue nanozymes with self-increasing catalytic activity.

Feng, Kaizheng; Wang, Zhenzhen; Wang, Shi; Wang, Guancheng; Dong, Haijiao; He, Hongliang; Wu, Haoan; Ma, Ming et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Although Prussian blue nanozymes (PBNZ) are widely applied in various fields, their catalytic mechanisms remain elusive. Here, we investigate the long-term catalytic performance of PBNZ as peroxidase (POD) and catalase (CAT) mimetics to elucidate their lifespan and underlying mechanisms. Unlike our previously reported Fe<sub>3</sub>O<sub>4</sub> nanozymes, which exhibit depletable POD-like activity, the POD and CAT-like activities of PBNZ not only persist but slightly enhance over prolonged catalysis. We demonstrate that the irreversible oxidation of PBNZ significantly promotes catalysis, leading to self-increasing catalytic activities. The catalytic process of the pre-oxidized PBNZ can be initiated through either the conduction band pathway or the valence band pathway. In summary, we reveal that PBNZ follows a dual-path electron transfer mechanism during the POD and CAT-like catalysis, offering the advantage of a long service life.

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