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 30 março 2025
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
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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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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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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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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
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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
A design strategy for the hierarchical fabrication of colloidal hybrid mesostructures
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

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