Responsive materials, which can adapt and operate autonomously under dynamic conditions, are a stepping stone towards functional, life-like systems inspired by fueled self-assembly processes in nature. Complex coacervate core micelles (C3Ms) comprising oppositely charged macromolecules constitute a novel class of polymeric micelles ideally suited for use as responsive nanoscopic delivery vehicles of hydrophilic and hydrophobic cargo. To fully exploit their potential, it is important that the C3Ms form and fall apart in an autonomous fashion as orchestrated by dynamic cues in their environment. Herein a means to temporally program the self-regulated C3M coassembly pathway, using a modulated base-catalyzed feedback system, is presented. Incor...
Out of equilibrium operation of chemical reaction networks (CRNs) enables artificial materials to au...
Fluorogenic nanoparticles (NPs) able to sense different physiological environments and respond with ...
A middle-chain cleavable telechelic poly(oligoethylene glycol) methyl ether acrylate) (MCCT-POEGA-Br...
Responsive materials, which can adapt and operate autonomously under dynamic conditions, are a stepp...
Fuel-driven macromolecular coacervation is an entry into the transient formation of highly charged, ...
Complex coacervate core micelles (C3Ms) spontaneously form upon co-assembly of two oppositely charge...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
The treatments of chronic and severe disorders, such as hearth diseases, cancer and diabetes still r...
Because of their ease of preparation and versatile modification opportunities, complex coacervate co...
The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometri...
The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometri...
Polymer-based micellar assemblies are gaining increasing attention in the smart materials field, yet...
The encapsulation of proteins into complex coacervate core micelles (C3Ms) is of potential interest ...
The encapsulation of proteins into complex coacervate core micelles (C3Ms) is of potential interest ...
In the quest for stimuli-responsive materials with specific, controllable functions, coacervate hydr...
Out of equilibrium operation of chemical reaction networks (CRNs) enables artificial materials to au...
Fluorogenic nanoparticles (NPs) able to sense different physiological environments and respond with ...
A middle-chain cleavable telechelic poly(oligoethylene glycol) methyl ether acrylate) (MCCT-POEGA-Br...
Responsive materials, which can adapt and operate autonomously under dynamic conditions, are a stepp...
Fuel-driven macromolecular coacervation is an entry into the transient formation of highly charged, ...
Complex coacervate core micelles (C3Ms) spontaneously form upon co-assembly of two oppositely charge...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
The treatments of chronic and severe disorders, such as hearth diseases, cancer and diabetes still r...
Because of their ease of preparation and versatile modification opportunities, complex coacervate co...
The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometri...
The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometri...
Polymer-based micellar assemblies are gaining increasing attention in the smart materials field, yet...
The encapsulation of proteins into complex coacervate core micelles (C3Ms) is of potential interest ...
The encapsulation of proteins into complex coacervate core micelles (C3Ms) is of potential interest ...
In the quest for stimuli-responsive materials with specific, controllable functions, coacervate hydr...
Out of equilibrium operation of chemical reaction networks (CRNs) enables artificial materials to au...
Fluorogenic nanoparticles (NPs) able to sense different physiological environments and respond with ...
A middle-chain cleavable telechelic poly(oligoethylene glycol) methyl ether acrylate) (MCCT-POEGA-Br...