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Self-assembly of block copolymers

Chemical Society Reviews · 2012 · Vol. 41(18) · pp. 5969–5969
Yiyong MaiAdi Eisenberg

Abstract

Block copolymer (BCP) self-assembly has attracted considerable attention for many decades because it can yield ordered structures in a wide range of morphologies, including spheres, cylinders, bicontinuous structures, lamellae, vesicles, and many other complex or hierarchical assemblies. These aggregates provide potential or practical applications in many fields. The present tutorial review introduces the primary principles of BCP self-assembly in bulk and in solution, by describing experiments, theories, accessible morphologies and morphological transitions, factors affecting the morphology, thermodynamics and kinetics, among others. As one specific example at a more advanced level, BCP vesicles (polymersomes) and their potential applications are discussed in some detail.

Advanced Polymer Synthesis and CharacterizationBlock Copolymer Self-AssemblyDendrimers and Hyperbranched PolymersPolymersomeCopolymerVesicleNanotechnologySelf-assemblyMaterials scienceBlock (permutation group theory)SPHERESChemical physicsChemistry

MeSH terms

Drug CarriersMicellesParticle SizePolymersThermodynamicsPhase TransitionNanostructures
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References
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Journal of Controlled Release · 2002 · 1,431 citations
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Biomacromolecules · 2009 · 1,104 citations
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Nanoengineering of Particle Surfaces
Advanced Materials · 2001 · 2,466 citations
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