Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engines (micromachines) is considered a potentially revolutionary paradigm in nanoscience. Nature knows how to combine different elements together in a fluidic state for intelligent design of nano-/micro-machines, which operate by pumping, stirring, and diffusion of their internal components. Taking inspirations from nature, scientists endeavor to develop the best materials, geometries, and conditions for self-propelled motion, and to better understand their mechanisms of motion and interactions. Today, microfluidic technology offers considerable advantages for the next generation of biomimetic particles, droplets and capsules. This review summar...
Theoretical modeling and computer simulations of molecular motors provide insight that engineers can...
Artificial micro/nanomotors (MNMs), inspired by mobile biomolecular entities, have demonstrated grea...
Designed micro/nanomotors are micro/nanoscale machines capable of autonomous motion in fluids, which...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
Nano- and micromotors are fascinating objects that can navigate in complex fluidic environments. The...
Micro‐ and nanomotors are micro‐ and nanostructures capable of autonomous movement and collective be...
Micro/nanomachines is an emerging field to design and build miniaturized machines analogous to macro...
Micro/nanomachines is an emerging field to design and build miniaturized machines analogous to macro...
Micro/nanomotors are self-propelled machines that can convert various energy sources into autonomous...
Micro/nanomotors are self-propelled machines that can convert various energy sources into autonomous...
Summary In this article we review the development, current status and future prospects of nano-and m...
Motion is a common phenomenon in biological processes. Major advances have been made in designing va...
Micro- and nanomotors (MNMs) are micro/nanoparticles that can perform autonomous motion in complex f...
Chemically powered micro- and nanomotors are small devices that are self-propelled by catalytic reac...
Self-propelled, synthetic active matters that transduce chemical energy into mechanical motion are e...
Theoretical modeling and computer simulations of molecular motors provide insight that engineers can...
Artificial micro/nanomotors (MNMs), inspired by mobile biomolecular entities, have demonstrated grea...
Designed micro/nanomotors are micro/nanoscale machines capable of autonomous motion in fluids, which...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
Nano- and micromotors are fascinating objects that can navigate in complex fluidic environments. The...
Micro‐ and nanomotors are micro‐ and nanostructures capable of autonomous movement and collective be...
Micro/nanomachines is an emerging field to design and build miniaturized machines analogous to macro...
Micro/nanomachines is an emerging field to design and build miniaturized machines analogous to macro...
Micro/nanomotors are self-propelled machines that can convert various energy sources into autonomous...
Micro/nanomotors are self-propelled machines that can convert various energy sources into autonomous...
Summary In this article we review the development, current status and future prospects of nano-and m...
Motion is a common phenomenon in biological processes. Major advances have been made in designing va...
Micro- and nanomotors (MNMs) are micro/nanoparticles that can perform autonomous motion in complex f...
Chemically powered micro- and nanomotors are small devices that are self-propelled by catalytic reac...
Self-propelled, synthetic active matters that transduce chemical energy into mechanical motion are e...
Theoretical modeling and computer simulations of molecular motors provide insight that engineers can...
Artificial micro/nanomotors (MNMs), inspired by mobile biomolecular entities, have demonstrated grea...
Designed micro/nanomotors are micro/nanoscale machines capable of autonomous motion in fluids, which...