AbstractActive colloids are small scale materials capable of producing enhanced motion within fluid environments. The field of active colloids has grown rapidly over the last ten years and is approaching maturity where viable applications are within reach. In this review, recent advances are surveyed with a strong emphasis on developments that can enable autonomous applications, where colloids execute useful tasks without external interventions. These applications are likely to prove transformative as the resulting technologies will be significantly less complex than current methods. A survey of the requirements to achieve autonomous applications is provided, considering guidance, solution compatibilities, manufacture and function; with ref...
The motion of an artificial microscale swimmer that uses a chemical reaction catalyzed on its own su...
The past two decades have seen a remarkable progress in the development of synthetic colloidal agent...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
Active Janus colloids are nano to micron sized colloids, capable of propelling themselves through fl...
Colloidal robots refer to the colloid scale (from nm to μm) machines capable of carrying out program...
We review recent work on active colloids or swimmers, such as self-propelled microorganisms, phoreti...
Colloïden bewegen in suspensie door Browniaanse beweging. Echter, deze vorm van bewegen is willekeur...
The rheological properties of a colloidal suspension are a function of the concentration of the coll...
Active colloids are microscopic particles, which self-propel through viscous fluids by converting en...
The fabrication of multifunctional polymeric Janus colloids that display catalytically driven propul...
Active colloids, which can be thought of as the synthetic analog of swimming bacteria, exhibit remar...
The design of autonomously moving objects that resemble living matter is an excellent research topic...
The motion of microscopic objects is strongly affected by their surrounding environment. In quiescen...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
Colloids that interact via a short-range attraction serve as the primary building blocks for a broad...
The motion of an artificial microscale swimmer that uses a chemical reaction catalyzed on its own su...
The past two decades have seen a remarkable progress in the development of synthetic colloidal agent...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
Active Janus colloids are nano to micron sized colloids, capable of propelling themselves through fl...
Colloidal robots refer to the colloid scale (from nm to μm) machines capable of carrying out program...
We review recent work on active colloids or swimmers, such as self-propelled microorganisms, phoreti...
Colloïden bewegen in suspensie door Browniaanse beweging. Echter, deze vorm van bewegen is willekeur...
The rheological properties of a colloidal suspension are a function of the concentration of the coll...
Active colloids are microscopic particles, which self-propel through viscous fluids by converting en...
The fabrication of multifunctional polymeric Janus colloids that display catalytically driven propul...
Active colloids, which can be thought of as the synthetic analog of swimming bacteria, exhibit remar...
The design of autonomously moving objects that resemble living matter is an excellent research topic...
The motion of microscopic objects is strongly affected by their surrounding environment. In quiescen...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
Colloids that interact via a short-range attraction serve as the primary building blocks for a broad...
The motion of an artificial microscale swimmer that uses a chemical reaction catalyzed on its own su...
The past two decades have seen a remarkable progress in the development of synthetic colloidal agent...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...