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首页> 外文期刊>Molecules >Evaluation of Self-Assembly Pathways to Control Crystallization-Driven Self-Assembly of a Semicrystalline P(VDF-co-HFP)-b-PEG-b-P(VDF-co-HFP) Triblock Copolymer
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Evaluation of Self-Assembly Pathways to Control Crystallization-Driven Self-Assembly of a Semicrystalline P(VDF-co-HFP)-b-PEG-b-P(VDF-co-HFP) Triblock Copolymer

机译:用于控制半结晶P(VDF-CO-HFP)-B-PEG-B-P(VDF-CO-HFP)三嵌段共聚物的结晶驱动自组装的自组装途径的评价

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To date, amphiphilic block copolymers (BCPs) containing poly(vinylidene fluoride-co-hexafluoropropene) (P(VDF-co-HFP)) copolymers are rare. At moderate content of HFP, this fluorocopolymer remains semicrystalline and is able to crystallize. Amphiphilic BCPs, containing a P(VDF-co-HFP) segment could, thus be appealing for the preparation of self-assembled block copolymer morphologies through crystallization-driven self-assembly (CDSA) in selective solvents. Here the synthesis, characterization by 1H and 19F NMR spectroscopies, GPC, TGA, DSC, and XRD; and the self-assembly behavior of a P(VDF-co-HFP)-b-PEG-b-P(VDF-co-HFP) triblock copolymer were studied. The well-defined ABA amphiphilic fluorinated triblock copolymer was self-assembled into nano-objects by varying a series of key parameters such as the solvent and the non -solvent, the self-assembly protocols, and the temperature. A large range of morphologies such as spherical, square, rectangular, fiber-like, and platelet structures with sizes ranging from a few nanometers to micrometers was obtained depending on the self-assembly protocols and solvents systems used. The temperature-induced crystallization-driven self-assembly (TI-CDSA) protocol allowed some control over the shape and size of some of the morphologies.
机译:迄今为止,含有聚(偏二氟乙烯 - 共六氟丙烯)(P(VDF-CO-HFP))共聚物的两亲嵌段共聚物(BCP)是罕见的。在HFP的适度含量下,该含氟聚合物仍然是半结晶的并且能够结晶。含有P(VDF-Co-HFP)区段的两亲性BCP可以吸引通过选择性溶剂中的结晶驱动的自组装(CDSA)制备自组装嵌段共聚物形态。这里合成,表征1H和19F NMR谱,GPC,TGA,DSC和XRD;研究了P(VDF-CO-HFP)-B-PEG-B-P(VDF-CO-HFP)三嵌段共聚物的自组装行为。通过改变一系列溶剂和非溶剂,自组装方案和温度,通过改变一系列关键参数来自组装到纳米物体中的明确定义的ABA两亲氟化三嵌段共聚物。根据所用的自组装方案和溶剂系统,获得了大量的形态,例如球形,正方形,矩形,纤维状和血小板结构,其尺寸范围为几纳米到微米。温度诱导的结晶驱动的自组装(Ti-CDSA)方案允许一些对某些形态的形状和大小的控制。

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