Metastable spherical micelles have been obtained by mixing in chloroform poly(styrene)-block-poly(4-vinylpyridine) diblock copolymers with perfluorinated surfactants bearing a carboxylic acid head. Dilution of these initial micelles triggers a morphological reorganization resulting in the formation of more stable vesicles. This transition can be advantageously used to encapsulate molecules of interest
Abstract: Amphiphilic block copolymers have the ability to assemble into multiple mor-phologies in s...
Catanoinic systems spontaneously form micelles and vesicles, which are self-assembled spherical stru...
Micelles are commonly regarded as colloidal structures spontaneously formed by amphiphilic molecules...
ABSTRACT: We study the dynamics of vesicle formation in an initially homogeneous dilute solution of ...
We present a mean-field theory to describe micelles formed by diblock copolymer with one neutral and...
Amphiphilic AB and ABA block copolymers have been demonstrated to form a variety of self-assembled a...
The morphological transition of molecular assemblies in aqueous solutions for a new amphiphilic dibl...
Block copolymer micelles and vesicles are mostly prepared by the solvent mixing method, where the bl...
ABSTRACT: Reversible morphological transitions of diblock copolymer micelles in dilute solutions wer...
Amphiphilic diblock copolymers containing glycopolymer segments, polystyreneblock-poly[2-(??-D-gluco...
ABSTRACT: A sample of poly(ferrocenyldimethylsilane)-b-poly(2-vinylpyridine) (PFS23-b-P2VP230), with...
Direct visualization of Morphological evolution remains extremely challenging despite its critical i...
Direct visualization of morphological evolution remains extremely challenging despite its critical i...
Amphiphilic block-copolymers are known to self-assemble into micelles and vesicles. In this paper, w...
The aggregation of cationic block copolymers formed by polystyrene (PS) and poly(ethyl-4-vinylpyridi...
Abstract: Amphiphilic block copolymers have the ability to assemble into multiple mor-phologies in s...
Catanoinic systems spontaneously form micelles and vesicles, which are self-assembled spherical stru...
Micelles are commonly regarded as colloidal structures spontaneously formed by amphiphilic molecules...
ABSTRACT: We study the dynamics of vesicle formation in an initially homogeneous dilute solution of ...
We present a mean-field theory to describe micelles formed by diblock copolymer with one neutral and...
Amphiphilic AB and ABA block copolymers have been demonstrated to form a variety of self-assembled a...
The morphological transition of molecular assemblies in aqueous solutions for a new amphiphilic dibl...
Block copolymer micelles and vesicles are mostly prepared by the solvent mixing method, where the bl...
ABSTRACT: Reversible morphological transitions of diblock copolymer micelles in dilute solutions wer...
Amphiphilic diblock copolymers containing glycopolymer segments, polystyreneblock-poly[2-(??-D-gluco...
ABSTRACT: A sample of poly(ferrocenyldimethylsilane)-b-poly(2-vinylpyridine) (PFS23-b-P2VP230), with...
Direct visualization of Morphological evolution remains extremely challenging despite its critical i...
Direct visualization of morphological evolution remains extremely challenging despite its critical i...
Amphiphilic block-copolymers are known to self-assemble into micelles and vesicles. In this paper, w...
The aggregation of cationic block copolymers formed by polystyrene (PS) and poly(ethyl-4-vinylpyridi...
Abstract: Amphiphilic block copolymers have the ability to assemble into multiple mor-phologies in s...
Catanoinic systems spontaneously form micelles and vesicles, which are self-assembled spherical stru...
Micelles are commonly regarded as colloidal structures spontaneously formed by amphiphilic molecules...