The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompatibility, versatility, and fuel bioavailability. Yet, the key parameters underlying the motion behavior of enzyme-powered motors are not completely understood. Here, we investigate the role of enzyme distribution and quantity on the generation of active motion. Two different micromotor architectures based on either polystyrene (PS) or polystyrene coated with a rough silicon dioxide shell (PS@SiO<sub>2</sub>) were explored. A directional propulsion with higher speed was observed for PS@SiO<sub>2</sub> motors when compared to their PS counterparts. We made use of stochastically optical reconstruction microscopy (STORM) to precisely detect singl...
Active biocompatible systems are of great current interest for their possible applications in drug o...
Enzyme-powered micro- and nanomotors make use of biocatalysis to self-propel in aqueous media and ho...
Enzyme-powered micro- and nanomotors make use of biocatalysis to self-propel in aqueous media and ho...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
\u3cp\u3eThe use of enzyme catalysis to power micro- and nanomachines offers unique features such as...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
Self-propulsion at the nanoscale constitutes a challenge due to the need for overcoming viscous forc...
Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting che...
Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting che...
Active biocompatible systems are of great current interest for their possible applications in drug o...
Active biocompatible systems are of great current interest for their possible applications in drug o...
Enzyme-powered micro- and nanomotors make use of biocatalysis to self-propel in aqueous media and ho...
Enzyme-powered micro- and nanomotors make use of biocatalysis to self-propel in aqueous media and ho...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
\u3cp\u3eThe use of enzyme catalysis to power micro- and nanomachines offers unique features such as...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
Self-propulsion at the nanoscale constitutes a challenge due to the need for overcoming viscous forc...
Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting che...
Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting che...
Active biocompatible systems are of great current interest for their possible applications in drug o...
Active biocompatible systems are of great current interest for their possible applications in drug o...
Enzyme-powered micro- and nanomotors make use of biocatalysis to self-propel in aqueous media and ho...
Enzyme-powered micro- and nanomotors make use of biocatalysis to self-propel in aqueous media and ho...