Issue 28, 2016

Boosting the oxidase mimicking activity of nanoceria by fluoride capping: rivaling protein enzymes and ultrasensitive F detection

Abstract

Nanomaterial-based enzyme mimics (nanozymes) are currently a new forefront of chemical research. However, the application of nanozymes is limited by their low catalytic activity and low turnover numbers. Cerium dioxide nanoparticles (nanoceria) are among the few with oxidase activity. Herein, we report an interesting finding addressing their limitations. The oxidase activity of nanoceria is improved by over 100-fold by fluoride capping, making it more close to real oxidases. The turnover number reached 700 in 15 min, drastically improved from ∼15 turnovers for the naked particles. The mechanism is attributed to surface charge modulation and facilitated electron transfer by F capping based on ζ-potential and free radical measurements. Ultrasensitive sensing of fluoride was achieved with a detection limit of 0.64 μM F in water and in toothpastes, while no other tested anions can achieve the activity enhancement.

Graphical abstract: Boosting the oxidase mimicking activity of nanoceria by fluoride capping: rivaling protein enzymes and ultrasensitive F− detection

Supplementary files

Article information

Article type
Communication
Submitted
02 Apr 2016
Accepted
17 Jun 2016
First published
21 Jun 2016

Nanoscale, 2016,8, 13562-13567

Boosting the oxidase mimicking activity of nanoceria by fluoride capping: rivaling protein enzymes and ultrasensitive F detection

B. Liu, Z. Huang and J. Liu, Nanoscale, 2016, 8, 13562 DOI: 10.1039/C6NR02730J

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