Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a Crystalline π-Conjugated Polythiophene Core by Self-Seeding

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Last updated 28 novembro 2024
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Polymers, Free Full-Text
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Uniform Biodegradable Fiber-Like Micelles and Block Comicelles via “Living” Crystallization-Driven Self-Assembly of Poly(l-lactide) Block Copolymers: The Importance of Reducing Unimer Self-Nucleation via Hydrogen Bond Disruption
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Linear and Branched Fiber-like Micelles from the Crystallization-Driven Self-Assembly of Heterobimetallic Block Copolymer Polyelectrolyte/Surfactant Complexes
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
PDF) Patchy Micelles with a Crystalline Core: Self-Assembly Concepts, Properties, and Applications
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Co-Self-seeding: A facile approach to generate heterogeneous π-Conjugated Fiber-Like comicelles with tunable Length, composition and morphology - ScienceDirect
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Water-Dispersible, Colloidally Stable, Surface-Functionalizable Uniform Fiberlike Micelles Containing a π-Conjugated Oligo(p-phenylenevinylene) Core of Controlled Length
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Preparation and cellular uptake behaviors of uniform fiber-like micelles with length controllability and high colloidal stability in aqueous media - ScienceDirect
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Extending the Scope of “Living” Crystallization-Driven Self-Assembly: Well-Defined 1D Micelles and Block Comicelles from Crystallizable Polycarbonate Block Copolymers
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Uniform electroactive fibre-like micelle nanowires for organic electronics
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Polymers, Free Full-Text
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Uniform 1D Micelles and Patchy & Block Comicelles via Scalable, One-Step Crystallization-Driven Block Copolymer Self-Assembly
Uniform, High Aspect Ratio Fiber-like Micelles and Block Co-micelles with a  Crystalline π-Conjugated Polythiophene Core by Self-Seeding
Explosive dissolution and trapping of block copolymer seed crystallites

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