LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Oxygen-Vacancy-Rich Piezoelectric BiO2-x Nanosheets for Augmented Piezocatalytic, Sonothermal and Enzymatic Therapies.

Photo by hans_isaacson from unsplash

Piezocatalytic therapy is a new-emerging reactive oxygen species (ROS) enabled therapeutic strategy that relies on built-in electric field and energy band bending of piezoelectric materials activated by ultrasound irradiation. Despite… Click to show full abstract

Piezocatalytic therapy is a new-emerging reactive oxygen species (ROS) enabled therapeutic strategy that relies on built-in electric field and energy band bending of piezoelectric materials activated by ultrasound irradiation. Despite becoming a hot topic, material development and mechanism exploration are still underway. Herein, as-synthesized oxygen-vacancy-rich BiO2-x nanosheets (NSs) demonstrate outstanding piezoelectric properties. Under ultrasound, a piezo-potential of 0.25 V for BiO2-x NSs is sufficient to tilt the conduction band to be more negative than the redox potentials of O2 /·O2 - , ·O2 - / H2 O2 , and H2 O2 /·OH, which initiates a cascade reaction for ROS generation. Moreover, the BiO2-x NSs exhibit peroxidase and oxidase-like activities to augment ROS production, especially in the H2 O2 -overexpressed tumor microenvironment. Density functional theory calculations show that the generated oxygen vacancies in BiO2-x NSs is favorable for H2 O2 adsorption and increasing the carrier density to produce ROS. Furthermore, the quick movement of electrons enables an excellent sonothermal effect, e.g., rapid rise in temperature to nearly 65°C upon ultrasound with low power (1.2 W/cm2 ) and short time (96 s). Therefore, our system realizes a multimode synergistic combination of piezocatalytic, enzymatic, and sonothermal therapies, providing a new direction for defect engineering-optimized piezoelectric materials for tumor therapy. This article is protected by copyright. All rights reserved.

Keywords: oxygen vacancy; vacancy rich; bio2 nss; bio2; bio2 nanosheets

Journal Title: Advanced materials
Year Published: 2023

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.