Related Experiment Video
Updated: Apr 22, 2026

Synthesis of Monodisperse Cylindrical Nanoparticles via Crystallization-driven Self-assembly of Biodegradable Block Copolymers
Published on: June 20, 2019
Morphological transitions in the crystallization-driven self-assembly of narrowly distributed π-conjugated triblock
Bin Huang1, Donglai Tian1, Zhubin Liu1
1Shanghai Key Laboratory of Advanced Polymeric Materials, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China. hagmhsn@ecust.edu.cn.
None:
Crystallization-driven self-assembly (CDSA) of π-conjugated block copolymers enables precise control over micellar morphology. However, generalizable strategies for preparing π-conjugated polymers with narrow dispersity (Đ < 1.3) to ensure reproducible self-assembly remain scarce. Herein, we report ABA triblock copolymers consisting of a crystalline poly(p-phenylene) core flanked by two pH-responsive poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA) coronae, synthesized via controlled step-growth polymerization and atom-transfer radical polymerization. In tetrahydrofuran-water mixtures, these copolymers undergo CDSA to form micelles exhibiting a progressive morphological evolution, from ribbons to fibers and ultimately to spherical aggregates, as the corona length increases, in accordance with a monotonic rise in interfacial curvature. Notably, the PDMAEMA coronae confer pronounced pH responsiveness. Under acidic conditions, CDSA is suppressed and curvature enhanced transitions toward spherical geometries are driven by electrostatic repulsion among protonated coronal segments. In contrast, alkaline media promote hydrophobic clustering of deprotonated chains, inducing ribbon stacking and longitudinal elongation of the fibrous assemblies.
More Related Videos
Related Concept Videos
Characteristics and Nomenclature of Copolymers
Polymer Classification: Crystallinity
Crystalline domains are the regions where polymer chains are aligned in an orderly manner and held together in proximity by intermolecular forces. For example, chains in the crystalline domains of polyethylene and nylon are bound together by van der Waals...
Step-Growth Polymerization: Overview
Many natural and synthetic polymers are produced by...
Molecular Weight of Step-Growth Polymers
As the step-growth polymerization involves step-wise condensation of monomers, the molecular weight also builds up eventually. Consequently, high molecular weight polymers are obtained at the late stages of the polymerization, where 99% of monomers have been consumed.
The extent of the...
Cationic Chain-Growth Polymerization: Mechanism
Ziegler–Natta Chain-Growth Polymerization: Overview

