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Block copolymer microparticles comprising inverse bicontinuous phases prepared via polymerization-induced self-assembly

机译:包含通过聚合诱导的自组装制备的反向双连续相的嵌段共聚物微粒

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摘要

Traditionally, post-polymerization processing routes have been used to obtain a wide range of block copolymer morphologies. However, this self-assembly approach is normally performed at rather low copolymer concentration, which precludes many potential applications. Herein, we report a facile method for the preparation of block copolymer particles exhibiting complex internal morphology via polymerization-induced self-assembly (PISA). More specifically, a series of diblock copolymers were synthesized by reversible addition–fragmentation chain transfer (RAFT) alternating copolymerization of styrene (St) with N-phenylmaleimide (NMI) using a poly(N,N-dimethylacrylamide) (PDMAC) stabilizer as a soluble precursor. Conducting such PISA syntheses in a 50 : 50 w/w ethanol/methyl ethyl ketone (MEK) mixture leads directly to the formation of micrometer-sized PDMAC-P(St-alt-NMI) diblock copolymer particles at 20% w/w solids. Adjusting the degree of polymerization (DP) of the core-forming P(St-alt-NMI) block to target highly asymmetric copolymer compositions provides convenient access to an inverse bicontinuous phase. TEM studies of intermediate structures provide useful insights regarding the mechanism of formation of this phase. SEM studies indicate that the final copolymer particles comprise perforated surface layers and possess nanostructured interiors. In addition, control experiments using 1,4-dioxane suggest that the high chain mobility conferred by the MEK co-solvent is essential for the formation of such inverse bicontinuous structures. One-pot PISA formulations are reproducible and involve only cheap, commercially available starting materials, so they should be readily amenable to scale-up. This augurs well for the potential use of such nanostructured micrometer-sized particles as new organic opacifiers for paints and coatings.
机译:传统上,后聚合工艺路线已用于获得各种嵌段共聚物形态。然而,这种自组装方法通常在相当低的共聚物浓度下进行,这排除了许多潜在的应用。本文中,我们报道了一种通过聚合诱导自组装(PISA)制备具有复杂内部形态的嵌段共聚物颗粒的简便方法。更具体地说,使用聚(N,N-二甲基丙烯酰胺)(PDMAC)稳定剂,通过苯乙烯(St)与N-苯基马来酰亚胺(NMI)的可逆加成-断裂链转移(RAFT)交替共聚合成了一系列二嵌段共聚物。可溶性前体。在50 :: 50 w / w乙醇/甲基乙基酮(MEK)混合物中进行PISA合成可直接导致形成20%w / w固体的微米级PDMAC-P(St-alt-NMI)二嵌段共聚物颗粒。调节形成核的P(St-alt-NMI)嵌段的聚合度(DP)以靶向高度不对称的共聚物组合物,可方便地获得反双连续相。对中间结构的TEM研究提供了有关此相形成机理的有用见解。 SEM研究表明,最终的共聚物颗粒包含穿孔的表面层并具有纳米结构的内部。另外,使用1,4-二恶烷的对照实验表明,由MEK助溶剂赋予的高链迁移率对于形成这种反向双连续结构是必不可少的。一锅法PISA制剂具有可重现性,并且仅涉及廉价的市售起始原料,因此应易于扩大规模。这很好地预示了这种纳米结构的微米级颗粒作为涂料和涂料的新型有机遮光剂的潜在用途。

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