The well-known Marangoni effect perfectly supports the dynamic mechanism of organic solvent-swollen gels on water. On this basis, we report a series of energy conversion processes of concentrated droplets of polyvinylidene fluoride/dimethyl formamide (PVDF/DMF) that can transfer chemical-free energy to kinetic energy to rapidly rotate itself on water. This droplet (22.2 mg) is capable to offer kinetic energy of 0.099 μJ to propel an artificial paper rocket of 31.8 mg to move over 560 cm on water at an initial velocity of 7.9 cm s<sup>–1</sup>. As the droplet increases to 35.0 mg, a paper goldfish of 10.6 mg can be driven to swim longer at a higher initial velocity of 20 cm s<sup>–1</sup>. The kinetic energy of the droplet can be further con...
Energy conversion from a mechanical form to electricity is one of the most important research advanc...
The self-propulsion of bodies floating in water is of great interest for developing new robotic and ...
The huge mechanical energy available in the environment, mostly in form of kinetic energy of fluids ...
The well-known Marangoni effect perfectly supports the dynamic mechanism of organic solvent-swollen ...
Certain aquatic insects rapidly traverse water by secreting surfactants that exploit the Marangoni e...
Abstract Certain aquatic insects rapidly traverse water by secreting surfactants that exploit the Ma...
Chemical propulsion generates motion by directly converting locally stored chemical energy into mech...
The goal of this thesis work is to propose a propulsion mechanism that accounts for the swimming pro...
We designed and experimentally studied the dynamics of two robotic systems that surf along the water...
A Marangoni propulsion is exhibited by some aquatic insects such as rove beetles as a means of rapid...
International audienceWe report spontaneous motion in a fully biocompatible system consisting of pur...
The emulation of the complex cellular and bacterial vesicles used to transport materials through flu...
Some aquatic insects can rapidly dash over the water surface by secreting chemical material that low...
From insects to arachnids to bacteria, the surfaces of lakes and ponds are teaming with life. Many m...
We apply laser light to induce the asymmetric heating of Janus colloids adsorbed at water-oil interf...
Energy conversion from a mechanical form to electricity is one of the most important research advanc...
The self-propulsion of bodies floating in water is of great interest for developing new robotic and ...
The huge mechanical energy available in the environment, mostly in form of kinetic energy of fluids ...
The well-known Marangoni effect perfectly supports the dynamic mechanism of organic solvent-swollen ...
Certain aquatic insects rapidly traverse water by secreting surfactants that exploit the Marangoni e...
Abstract Certain aquatic insects rapidly traverse water by secreting surfactants that exploit the Ma...
Chemical propulsion generates motion by directly converting locally stored chemical energy into mech...
The goal of this thesis work is to propose a propulsion mechanism that accounts for the swimming pro...
We designed and experimentally studied the dynamics of two robotic systems that surf along the water...
A Marangoni propulsion is exhibited by some aquatic insects such as rove beetles as a means of rapid...
International audienceWe report spontaneous motion in a fully biocompatible system consisting of pur...
The emulation of the complex cellular and bacterial vesicles used to transport materials through flu...
Some aquatic insects can rapidly dash over the water surface by secreting chemical material that low...
From insects to arachnids to bacteria, the surfaces of lakes and ponds are teaming with life. Many m...
We apply laser light to induce the asymmetric heating of Janus colloids adsorbed at water-oil interf...
Energy conversion from a mechanical form to electricity is one of the most important research advanc...
The self-propulsion of bodies floating in water is of great interest for developing new robotic and ...
The huge mechanical energy available in the environment, mostly in form of kinetic energy of fluids ...