Phase separation of aqueous solutions containing polyelectrolytes can lead to formation of dense, solute-rich liquid droplets referred to as coacervates, surrounded by a dilute continuous phase of much larger volume. This type of liquid–liquid phase separation is thought to help explain the appearance of polyelectrolyte-rich intracellular droplets in the cytoplasm and nucleoplasm of extant biological cells and may be relevant to protocellular compartmentalization of nucleic acids on the early Earth. Here we describe complex coacervates formed upon mixing the polycation poly(allylamine) (PAH, 15 kDa) with the anionic nucleotides adenosine 5′-mono-, di-, and triphosphate (AMP, ADP, and ATP). Droplet formation was observed over a wide range o...
When oppositely charged polymers are mixed, counterion release drives phase separation; understandin...
We report on the formation of surfactant-based complex catanionic coacervate droplets in mixtures of...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Phase separation of mixtures of oppositely charged polymers provides a simple and direct route to co...
Phase separation of mixtures of oppositely charged polymers provides a simple and direct route to co...
The chemical principles behind many vital processes are an open question in science. Be it to unders...
Coacervates are polymer-rich droplets that form through liquid-liquid phase separation in polymer so...
Polyelectrolyte/nucleotide multiphase complex coacervate droplets are produced by internalized aqueo...
Compartmentalization in a prebiotic setting is an important aspect of early cell formation and is cr...
Compartmentalization by complex coacervation is important across a range of different fields includi...
The central themes of this thesis are the design aspects and function of versatile molecular assembl...
Life on earth may have first appeared in the form of a protocell capable of metabolism and containin...
Complex coacervates are liquid-liquid phase separated systems, typically containing oppositely charg...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
Complex coacervation refers to the liquid–liquid phase separation (LLPS) process occurring between c...
When oppositely charged polymers are mixed, counterion release drives phase separation; understandin...
We report on the formation of surfactant-based complex catanionic coacervate droplets in mixtures of...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...
Phase separation of mixtures of oppositely charged polymers provides a simple and direct route to co...
Phase separation of mixtures of oppositely charged polymers provides a simple and direct route to co...
The chemical principles behind many vital processes are an open question in science. Be it to unders...
Coacervates are polymer-rich droplets that form through liquid-liquid phase separation in polymer so...
Polyelectrolyte/nucleotide multiphase complex coacervate droplets are produced by internalized aqueo...
Compartmentalization in a prebiotic setting is an important aspect of early cell formation and is cr...
Compartmentalization by complex coacervation is important across a range of different fields includi...
The central themes of this thesis are the design aspects and function of versatile molecular assembl...
Life on earth may have first appeared in the form of a protocell capable of metabolism and containin...
Complex coacervates are liquid-liquid phase separated systems, typically containing oppositely charg...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
Complex coacervation refers to the liquid–liquid phase separation (LLPS) process occurring between c...
When oppositely charged polymers are mixed, counterion release drives phase separation; understandin...
We report on the formation of surfactant-based complex catanionic coacervate droplets in mixtures of...
Cells have evolved to be self-sustaining compartmentalized systems that consist of many thousands of...