This study is concerned with the morphological transition kinetics of polyelectrolyte complex micelles formed from an anionic–neutral block copolymer and a cationic–neutral block copolymer in aqueous NaCl solution. The transformation was induced by changing the mixing ratio of the anionic and cationic monomer units in the copolymers. The kinetics of the morphological transition was directly tracked by time-resolved (ultra) small-angle X-ray scattering coupled with rapid mixing of the block copolymer components by a stopped flow apparatus. The transformation from cylindrical to spherical micelles upon changing the mixing ratio of the copolymers was reversible, and the process occurred via the random scission of the cylindrical micelles along...
A rheological study of mixed micelles formed by PEO-PPO-PEO triblock copolymer P123 and nonionic sur...
Direct visualization of Morphological evolution remains extremely challenging despite its critical i...
The ion-induced micellar transition is online-investigated by the time dependence of the viscosity o...
Here we present an in situ study of the nonequilibrium cylinder-to-sphere morphological transition k...
Here we present an in situ study of the nonequilibrium cylinder-to-sphere morphological transition k...
The kinetics of the sphere-to-rod transition was studied in aqueous micelle solutions of triblock co...
The kinetics of the sphere-to-rod transition was studied in aqueous micelle solutions of triblock co...
Time-resolved laser light scattering, combined with transmission electron microscopy, was employed t...
The slow cylinder-to-sphere transition for cylindrical micelles from nanopore extrusion is quantitat...
The kinetic and mechanistic details involved in the morphological transitions occurring in aggregate...
Direct visualization of morphological evolution remains extremely challenging despite its critical i...
In this work, we present the chain exchange kinetics in block copolymer micelles of spherical and cy...
Transformations between different micellar morphologies in solution induced by changes in compositio...
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...
A rheological study of mixed micelles formed by PEO-PPO-PEO triblock copolymer P123 and nonionic sur...
Direct visualization of Morphological evolution remains extremely challenging despite its critical i...
The ion-induced micellar transition is online-investigated by the time dependence of the viscosity o...
Here we present an in situ study of the nonequilibrium cylinder-to-sphere morphological transition k...
Here we present an in situ study of the nonequilibrium cylinder-to-sphere morphological transition k...
The kinetics of the sphere-to-rod transition was studied in aqueous micelle solutions of triblock co...
The kinetics of the sphere-to-rod transition was studied in aqueous micelle solutions of triblock co...
Time-resolved laser light scattering, combined with transmission electron microscopy, was employed t...
The slow cylinder-to-sphere transition for cylindrical micelles from nanopore extrusion is quantitat...
The kinetic and mechanistic details involved in the morphological transitions occurring in aggregate...
Direct visualization of morphological evolution remains extremely challenging despite its critical i...
In this work, we present the chain exchange kinetics in block copolymer micelles of spherical and cy...
Transformations between different micellar morphologies in solution induced by changes in compositio...
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...
A rheological study of mixed micelles formed by PEO-PPO-PEO triblock copolymer P123 and nonionic sur...
Direct visualization of Morphological evolution remains extremely challenging despite its critical i...
The ion-induced micellar transition is online-investigated by the time dependence of the viscosity o...