Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting chemical energy into mechanical action. These tiny machines have appeared as promising biomedical tools for treatment and diagnosis and have also been used for environmental, antimicrobial or sensing applications. Among the possible catalytic engines, enzymes have emerged as an alternative to inorganic catalysts due to their biocompatibility and the variety and bioavailability of fuels. Although the field of enzyme-powered micro- and nano-motors has a trajectory of more than a decade, a comprehensive framework on how to rationally design, control and optimize their motion is still missing. With this purpose, herein we performed a thorough biblio...
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...
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...
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...
Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting che...
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...
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...
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...
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...
Nature has inspired the creation of artificial micro- and nanomotors that self-propel converting che...
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...
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...
Self-propulsion at the nanoscale constitutes a challenge due to the need for overcoming viscous forc...