Fuel‐Free Nanocap‐Like Motors Actuated Under Visible Light

Xu Wang, Varun Sridhar, Surong Guo, Nahid Talebi, Albert Miguel‐López, Kersten Hahn, Peter A. van Aken, Samuel Sánchez

Advanced Functional Materials · 2018 · 76 citations · 59 references

Concepts

Abstract

Abstract The motion of nanomotors triggered by light sources will provide new alternative routes to power nanoarchitectures without the need of chemical fuels. However, most light‐driven nanomotors are triggered by UV‐light, near infrared reflection, or laser sources. It is demonstrated that nanocap shaped Au/TiO 2 nanomotors (175 nm in diameter) display increased Brownian motion in the presence of broad spectrum visible light. The motion results from the surface plasmon resonance effect leading to self‐electrophoresis between the Au and TiO 2 layers, a mechanism called plasmonic photocatalytic effect in the field of photocatalysis. This mechanism is experimentally characterized by electron energy loss spectroscopy, energy‐filtered transmission electron microscopy, and optical video tracking. This mechanism is also studied in a more theoretical manner using numerical finite‐difference time‐domain simulations. The ability to power nanomaterials with visible light may result in entirely new applications for externally powered micro/nanomotors.

References

59