Visible-Light-Driven Single-Component BiVO<sub>4</sub> Micromotors with the Autonomous Ability for Capturing Microorganisms.
basic_science · Level V
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- Record sourced from PubMed, PMID 31283169.
- Also identified by DOI 10.1021/acsnano.9b03184.
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Abstract
Light-driven micro/nanomotors represent the next generation of automotive devices that can be easily actuated and controlled by using an external light source. As the field evolves, there is a need for developing more sophisticated micromachines that can fulfill diverse tasks in complex environments. Herein, we introduce single-component BiVO<sub>4</sub> micromotors with well-defined micro/nanostructures that can swim both individually and as collectively assembled entities under visible-light irradiation. These devices can perform cargo loading and transport of passive particles as well as living microorganisms without any surface functionalization. Interestingly, after photoactivation, the BiVO<sub>4</sub> micromotors exhibited an ability to seek and adhere to yeast cell walls, with the possibility to control their attachment/release by switching the light on/off, respectively. Taking advantage of the selective motor/fungal cells attachment, the fungicidal activity of BiVO<sub>4</sub> micromotors under visible illumination was also demonstrated. The presented star-shaped BiVO<sub>4</sub> micromotors, obtained by a hydrothermal synthesis, contribute to the potential large-scale fabrication of light-powered micromotors. Moreover, these multifunctional single-component micromachines with controlled self-propulsion, collective behavior, cargo transportation, and photocatalytic activity capabilities hold promising applications in sensing, biohybrids assembly, cargo delivery, and microbiological water pollution remediation.
Medical subject headings
- Bismuth
- Light
- Nanostructures
- Saccharomyces cerevisiae
- Vanadates