The confluence of droplet-compartmentalised chemical systems and architectures composed of interacting droplets points towards a novel technology mimicking core features of the cellular architecture that dominates biology. A key challenge to achieve such a droplet technology is long-term stability in conjunction with interdroplet communication. Here, we probed the parameter space of the Belousov-Zhabotinsky (BZ) medium, an extensively studied model for non-equilibrium chemical reactions, pipetted as 2.5 mm droplets in hexadecane oil. The presence of asolectin lipids enabled the formation of arrays of contacted BZ droplets, of which the wave patterns were characterised over time. We utilised laser-cut acrylic templates with over 40 linear oi...
Evolution is a characteristic feature of living systems, and many fundamental processes in life, inc...
In the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cell...
Previously, we reported the manual assembly of lipid-coated aqueous droplets in oil to form two-dime...
The challenge of overcoming limitations in computing technology drives the development of unconventi...
An aqueous droplet in a solution of lipids in oil acquires a lipid monolayer coat, and two such drop...
Chemical communication leading to synchronization and collective behaviour of dynamic elements, such...
Nonlinear chemical medium can be used to perform information processing functions. In typical applic...
Without an imposed physical structure, even the most complex chemistries are limited in their abilit...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Aqueous droplets in oil that are coated with lipid monolayers and joined through interface bilayers ...
Synchronization of dynamic elements via chemical communication is a widespread phenomenon in nature ...
We study the dynamical behavior of one-dimensional arrays of B100 mm diameter aqueous droplets conta...
In nature, an important example of chemical communication and synchronicity can be found in cell pop...
Evolution is a characteristic feature of living systems, and many fundamental processes in life, inc...
In the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cell...
Previously, we reported the manual assembly of lipid-coated aqueous droplets in oil to form two-dime...
The challenge of overcoming limitations in computing technology drives the development of unconventi...
An aqueous droplet in a solution of lipids in oil acquires a lipid monolayer coat, and two such drop...
Chemical communication leading to synchronization and collective behaviour of dynamic elements, such...
Nonlinear chemical medium can be used to perform information processing functions. In typical applic...
Without an imposed physical structure, even the most complex chemistries are limited in their abilit...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Aqueous droplets in oil that are coated with lipid monolayers and joined through interface bilayers ...
Synchronization of dynamic elements via chemical communication is a widespread phenomenon in nature ...
We study the dynamical behavior of one-dimensional arrays of B100 mm diameter aqueous droplets conta...
In nature, an important example of chemical communication and synchronicity can be found in cell pop...
Evolution is a characteristic feature of living systems, and many fundamental processes in life, inc...
In the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cell...
Previously, we reported the manual assembly of lipid-coated aqueous droplets in oil to form two-dime...