We study the hydrodynamics and shape changes of chemically active droplets. In non-spherical droplets, surface tension generates hydrodynamic flows that drive liquid droplets into a spherical shape. Here we show that spherical droplets that are maintained away from thermodynamic equilibrium by chemical reactions may not remain spherical but can undergo a shape instability which can lead to spontaneous droplet division. In this case chemical activity acts against surface tension and tension-induced hydrodynamic flows. By combining low Reynolds-number hydrodynamics with phase separation dynamics and chemical reaction kinetics we determine stability diagrams of spherical droplets as a function of dimensionless viscosity and reaction parameters...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
We study the hydrodynamics and shape changes of chemically active droplets. In non-spherical droplet...
Liquid-liquid phase separation yields spherical droplets that eventually coarsen to one large, stabl...
Liquid-liquid phase separation yields spherical droplets that eventually coarsen to one large, stabl...
It has been proposed that during the early steps in the origin of life, small droplets could have fo...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
It has been proposed that during the early steps in the origin of life, small droplets could have fo...
Chemically active droplets provide simple models for cell-like systems that can grow and divide. Suc...
Chemically active droplets provide simple models for cell-like systems that can grow and divide. Suc...
Nature Physics | Article Print Share/bookmark Growth and division of active droplets provides a mode...
In unserem täglichen Leben begegnen wir Tropfen oft in physikalischen Systems, beispielsweise als O...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
We study the hydrodynamics and shape changes of chemically active droplets. In non-spherical droplet...
Liquid-liquid phase separation yields spherical droplets that eventually coarsen to one large, stabl...
Liquid-liquid phase separation yields spherical droplets that eventually coarsen to one large, stabl...
It has been proposed that during the early steps in the origin of life, small droplets could have fo...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
It has been proposed that during the early steps in the origin of life, small droplets could have fo...
Chemically active droplets provide simple models for cell-like systems that can grow and divide. Suc...
Chemically active droplets provide simple models for cell-like systems that can grow and divide. Suc...
Nature Physics | Article Print Share/bookmark Growth and division of active droplets provides a mode...
In unserem täglichen Leben begegnen wir Tropfen oft in physikalischen Systems, beispielsweise als O...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
Droplets abound in nature and technology. In general, they are multicomponent, and, when out of equi...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...