The development of effective autonomous micro- and nanomotors relies on controlling fluid motion at interfaces. One of the main challenges in the engineering of such artificial machines is the quest for efficient mechanisms to power them without using external driving forces. In the past decade, there has been an important increase of man-made micro- and nanomotors fueled by self-generated physicochemical gradients. Impressive proofs of concept of multitasking machines have been reported demonstrating their capabilities for a plethora of applications. While the progress toward applications is promising, there are still open questions on fundamental physicochemical aspects behind the mechanical actuation, which require more experimental and ...
Self-propelled, synthetic active matters that transduce chemical energy into mechanical motion are e...
Chemically powered micro- and nanomotors are small devices that are self-propelled by catalytic reac...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
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...
Self-propelled micro/nanomotors that can transform chemical energy from the surrounding environment ...
Catalytic engines can use hydrogen peroxide as a chemical fuel in order to drive motion at the micro...
abstract: Locomotion of microorganisms is commonly observed in nature. Although microorganism locomo...
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...
Thesis (Ph.D.)--University of Washington, 2013The past decade has seen the rapid development of synt...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2018, Tutor: ...
Chemotaxis in practice: Two different artificial catalytic micromotors (tubular and spherical, see s...
Abstract of Twentieth Symposium on Thermophysical Properties; Boulder, Colorado (USA), June 24–29 (2...
Since their discovery in 2004, chemically self-propelled nanomotors have been studied in the hopes t...
Self-propelled, synthetic active matters that transduce chemical energy into mechanical motion are e...
Chemically powered micro- and nanomotors are small devices that are self-propelled by catalytic reac...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...
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...
Self-propelled micro/nanomotors that can transform chemical energy from the surrounding environment ...
Catalytic engines can use hydrogen peroxide as a chemical fuel in order to drive motion at the micro...
abstract: Locomotion of microorganisms is commonly observed in nature. Although microorganism locomo...
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...
Thesis (Ph.D.)--University of Washington, 2013The past decade has seen the rapid development of synt...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2018, Tutor: ...
Chemotaxis in practice: Two different artificial catalytic micromotors (tubular and spherical, see s...
Abstract of Twentieth Symposium on Thermophysical Properties; Boulder, Colorado (USA), June 24–29 (2...
Since their discovery in 2004, chemically self-propelled nanomotors have been studied in the hopes t...
Self-propelled, synthetic active matters that transduce chemical energy into mechanical motion are e...
Chemically powered micro- and nanomotors are small devices that are self-propelled by catalytic reac...
The use of enzyme catalysis to power micro- and nanomachines offers unique features such as biocompa...