Controlling the Self-Assembly Structure of Magnetic Nanoparticles and Amphiphilic Block-Copolymers: From Micelles to Vesicles

胶束 聚合物囊泡 纳米颗粒 共聚物 两亲性 聚合物 磁性纳米粒子 化学 高分子化学 聚苯乙烯 化学工程 小泡 自组装 材料科学 纳米技术 有机化学 水溶液 生物化学 工程类
作者
Robert J. Hickey,Alyssa S. Haynes,James M. Kikkawa,So‐Jung Park
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:133 (5): 1517-1525 被引量:333
标识
DOI:10.1021/ja1090113
摘要

We report how to control the self-assembly of magnetic nanoparticles and a prototypical amphiphilic block-copolymer composed of poly(acrylic acid) and polystyrene (PAA-b-PS). Three distinct structures were obtained by controlling the solvent−nanoparticle and polymer−nanoparticle interactions: (1) polymersomes densely packed with nanoparticles (magneto-polymersomes), (2) core−shell type polymer assemblies where nanoparticles are radially arranged at the interface between the polymer core and the shell (magneto-core shell), and (3) polymer micelles where nanoparticles are homogeneously incorporated (magneto-micelles). Importantly, we show that the incorporation of nanoparticles drastically affects the self-assembly structure of block-copolymers by modifying the relative volume ratio between the hydrophobic block and the hydrophilic block. As a consequence, the self-assembly of micelle-forming block-copolymers typically produces magneto-polymersomes instead of magneto-micelles. On the other hand, vesicle-forming polymers tend to form magneto-micelles due to the solubilization of nanoparticles in polymer assemblies. The nanoparticle−polymer interaction also controls the nanoparticle arrangement in the polymer matrix. In N,N-dimethylformamide (DMF) where PS is not well-solvated, nanoparticles segregate from PS and form unique radial assemblies. In tetrahydrofuran (THF), which is a good solvent for both nanoparticles and PS, nanoparticles are homogeneously distributed in the polymer matrix. Furthermore, we demonstrated that the morphology of nanoparticle-encapsulating polymer assemblies significantly affects their magnetic relaxation properties, emphasizing the importance of the self-assembly structure and nanoparticle arrangement as well as the size of the assemblies.
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