Viscoelastic liquid coacervate phases that are highly enriched in nonconjugated polyelectrolytes are currently the subject of highly active research from biological and soft-materials perspectives. However, formation of a liquid, electronically active coacervate has proved highly elusive, since extended π-electron interactions strongly favor the solid state. Herein we show that a conjugated polyelectrolyte can be rationally designed to undergo aqueous liquid/liquid phase separation to form a liquid coacervate phase. This result is significant both because it adds to the fundamental understanding of liquid/liquid phase separation but also because it opens intriguing applications in light harvesting and beyond. We find that the semiconducting...
<p>The Scheutjens-Fleer self-consistent field (SF-SCF) theory is used to study complexation between ...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Complex coacervation is an associative, liquid–liquid phase separation that can occur in solutions o...
Oppositely charged, water-soluble polyelectrolytes undergo a spontaneous complexation and phase sepa...
Mixtures of oppositely charged polyelectrolytes can undergo a phase separation to form a polymer ric...
We investigated the temperature-induced liquid–liquid phase separation (coacervation) of polyelectro...
Complex coacervates are formed by liquid-liquid phase separation of an aqueous solution of oppositel...
Recent developments suggest that the phase transition of natural and synthetic biomacromolecules rep...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
Coacervates have enormous potential due to their diverse functional properties supporting a wide num...
Many biopolymers are highly charged, and as in the case of many polymer mixtures, they tend to phase...
Conjugated polyelectrolytes (CPEs) have the potential to serve as building blocks of artificial ligh...
Coacervation is liquid-liquid phase separation ubiquitous in industrial applications and cellular bi...
Coacervation is liquid–liquid phase separation ubiquitous in industrial applications and cellular bi...
Complex coacervation is an associative liquid-liquid phase separation of oppositely-charged polyelec...
<p>The Scheutjens-Fleer self-consistent field (SF-SCF) theory is used to study complexation between ...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Complex coacervation is an associative, liquid–liquid phase separation that can occur in solutions o...
Oppositely charged, water-soluble polyelectrolytes undergo a spontaneous complexation and phase sepa...
Mixtures of oppositely charged polyelectrolytes can undergo a phase separation to form a polymer ric...
We investigated the temperature-induced liquid–liquid phase separation (coacervation) of polyelectro...
Complex coacervates are formed by liquid-liquid phase separation of an aqueous solution of oppositel...
Recent developments suggest that the phase transition of natural and synthetic biomacromolecules rep...
Coacervates are dense phases formed by mixing polyelectrolytes with oppositely charged species, such...
Coacervates have enormous potential due to their diverse functional properties supporting a wide num...
Many biopolymers are highly charged, and as in the case of many polymer mixtures, they tend to phase...
Conjugated polyelectrolytes (CPEs) have the potential to serve as building blocks of artificial ligh...
Coacervation is liquid-liquid phase separation ubiquitous in industrial applications and cellular bi...
Coacervation is liquid–liquid phase separation ubiquitous in industrial applications and cellular bi...
Complex coacervation is an associative liquid-liquid phase separation of oppositely-charged polyelec...
<p>The Scheutjens-Fleer self-consistent field (SF-SCF) theory is used to study complexation between ...
In situ, reversible coacervate formation within lipid vesicles represents a key step in the developm...
Complex coacervation is an associative, liquid–liquid phase separation that can occur in solutions o...