Self-propelled micro/nanomotors that can transform chemical energy from the surrounding environment into mechanical motion are cutting edge nanotechnologies with potential applications in biomedicine and environmental remediation. These applications require full understanding of the propulsion mechanisms to improve the performance and controllability of the motors. In this work, we demonstrate that there are two competing chemomechanical mechanisms at semiconductor/metal (Si/Pt) micromotors in a pump configuration under visible light exposure. The first propulsion mechanism is driven by an electro-osmotic process stemmed from a photoactivation reaction mediated by H<sub>2</sub>O<sub>2</sub>, which takes place in two separated redox reaction...
The development of autonomous micro/nanomotors driven by self-generated chemical gradients is a topi...
Nanomachines have unique characteristics when compared to the counterpart macroscopic machines for b...
Thesis (Ph.D.)--University of Washington, 2013The past decade has seen the rapid development of synt...
Self-propelled micro/nanomotors that can transform chemical energy from the surrounding environment ...
The development of effective autonomous micro- and nanomotors relies on controlling fluid motion at ...
We report a simple yet highly efficient chemical motor that can be controlled with visible light. Th...
We report a simple yet highly efficient chemical motor that can be controlled with visible light. Th...
Symposium BM6: Fabrication, Characterization and Applications of Bioinspired Nanostructured Material...
In recent years, micro/nanomotors have become an important research field in nanotechnology. Light-d...
Light-driven synthetic micro-/nanomotors have attracted considerable attention due to their potentia...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
In the past two decades, micro/nanomotor is emerging as a critical domain of nanoscale research. Lig...
The prospect of self-propelled artificial machines small enough to navigate within biological matter...
The development of autonomous micro/nanomotors driven by self-generated chemical gradients is a topi...
The development of autonomous micro/nanomotors driven by self-generated chemical gradients is a topi...
Nanomachines have unique characteristics when compared to the counterpart macroscopic machines for b...
Thesis (Ph.D.)--University of Washington, 2013The past decade has seen the rapid development of synt...
Self-propelled micro/nanomotors that can transform chemical energy from the surrounding environment ...
The development of effective autonomous micro- and nanomotors relies on controlling fluid motion at ...
We report a simple yet highly efficient chemical motor that can be controlled with visible light. Th...
We report a simple yet highly efficient chemical motor that can be controlled with visible light. Th...
Symposium BM6: Fabrication, Characterization and Applications of Bioinspired Nanostructured Material...
In recent years, micro/nanomotors have become an important research field in nanotechnology. Light-d...
Light-driven synthetic micro-/nanomotors have attracted considerable attention due to their potentia...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
In the past two decades, micro/nanomotor is emerging as a critical domain of nanoscale research. Lig...
The prospect of self-propelled artificial machines small enough to navigate within biological matter...
The development of autonomous micro/nanomotors driven by self-generated chemical gradients is a topi...
The development of autonomous micro/nanomotors driven by self-generated chemical gradients is a topi...
Nanomachines have unique characteristics when compared to the counterpart macroscopic machines for b...
Thesis (Ph.D.)--University of Washington, 2013The past decade has seen the rapid development of synt...