The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometric colloidal complexes, known, among other names, as complex coacervates core micelles (C3Ms). C3Ms are of widespread interest in nanomedicine for controlled delivery and release, whilst research activity into other application areas, such as gelation, catalysis, nanoparticle synthesis, and sensing, is increasing. In this review, we discuss recent studies on the functional roles that C3Ms can fulfil in these and other fields, focusing on emerging structure-function relations and remaining knowledge gaps
We investigated the hierarchical structure of complex coacervate core micelles formed by mixing a su...
We present a systematic study of the stability and morphology of complex coacervate core micelles (C...
We present a systematic study of the stability and morphology of complex coacervate core micelles (C...
The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometri...
Complex coacervate core micelles (C3Ms) spontaneously form upon co-assembly of two oppositely charge...
\u3cp\u3eIn this review we present an overview of the literature on the co-assembly of neutral-ionic...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
Pairs of ionic group dependence of the structure of a complex coacervate core micelle (C3M) in an aq...
Polyelectrolyte complex based micelles have attracted significant attention due to their potential r...
Responsive materials, which can adapt and operate autonomously under dynamic conditions, are a stepp...
We investigated the hierarchical structure of complex coacervate core micelles formed by mixing a su...
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...
We investigated the hierarchical structure of complex coacervate core micelles formed by mixing a su...
We present a systematic study of the stability and morphology of complex coacervate core micelles (C...
We present a systematic study of the stability and morphology of complex coacervate core micelles (C...
The co-assembly of ionic-neutral block copolymers with oppositely charged species produces nanometri...
Complex coacervate core micelles (C3Ms) spontaneously form upon co-assembly of two oppositely charge...
\u3cp\u3eIn this review we present an overview of the literature on the co-assembly of neutral-ionic...
Complex coacervate core micelles (C3Ms) are formed by mixing aqueous solutions of a charged (bio)mac...
Pairs of ionic group dependence of the structure of a complex coacervate core micelle (C3M) in an aq...
Polyelectrolyte complex based micelles have attracted significant attention due to their potential r...
Responsive materials, which can adapt and operate autonomously under dynamic conditions, are a stepp...
We investigated the hierarchical structure of complex coacervate core micelles formed by mixing a su...
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...
We investigated the hierarchical structure of complex coacervate core micelles formed by mixing a su...
We present a systematic study of the stability and morphology of complex coacervate core micelles (C...
We present a systematic study of the stability and morphology of complex coacervate core micelles (C...