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Isotactic-Polypropylene/Atactic-Polystyrene Miktoarm Star Copolymers: Synthesis and Aggregation Morphology.


ABSTRACT: In this work, a series of isotactic-polypropylene/atactic-polystyrene (iPP/aPS) miktoarm star copolymers, PxSy, was synthesized via an arm-first approach. Varied star macromolecule architectures were fabricated by designing the arm length and the arm numbers (x and y). These miktoarm stars were able to form micelles in selective solvent (N,N'-dimethylformamide (DMF)), in which the insoluble iPP arms formed the core and the soluble aPS arms formed the shell. The miktoarm polymers aggregated to micro-nanoscale binary structures (MNBSes) in the casting process, and their morphologies, including the MNBS shape and size, were greatly influenced by the PxSy architectures. The MNBSes endowed the material surface with superhydrophobic performance with a water contact angle of 157.0° and a sliding angle of 1.5°.

SUBMITTER: Wang Y 

PROVIDER: S-EPMC6835624 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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Isotactic-Polypropylene/Atactic-Polystyrene Miktoarm Star Copolymers: Synthesis and Aggregation Morphology.

Wang Yuanjie Y   Liu Xinzhi X   Liu Liying L   Niu Hui H  

Polymers 20190927 10


In this work, a series of isotactic-polypropylene/atactic-polystyrene (<i>i</i>PP/<i>a</i>PS) miktoarm star copolymers, P<sub>x</sub>S<sub>y</sub>, was synthesized via an arm-first approach. Varied star macromolecule architectures were fabricated by designing the arm length and the arm numbers (x and y). These miktoarm stars were able to form micelles in selective solvent (<i>N</i>,<i>N'</i>-dimethylformamide (DMF)), in which the insoluble <i>i</i>PP arms formed the core and the soluble <i>a</i>  ...[more]

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