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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Fabrication of cage-like particles via unstable seeded dispersion polymerization: A new concept in the polymerization-induced self-assembly
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Fabrication of cage-like particles via unstable seeded dispersion polymerization: A new concept in the polymerization-induced self-assembly

机译:通过不稳定的种子分散聚合制备笼状颗粒:聚合诱导自组装的新概念

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The formation mechanism of hollow micron-sized polystyrene (PS) particles having numerous dents on the surface, so-called cage-like particles, obtained from seeded dispersion polymerization (SDP) of 2-ethylhexyl methacrylate (EHMA) with low molecular weight (MW) PS particles stabilized by poly(vinyl alcohol) (PVA) in the presence of hexadecane droplets was investigated. It was found that association of poly(2-ethylhexyl methacrylate) (PEHMA)/hexadecane phases which occurs due to the instability of the obtained composite particles followed by a diffusion of PS ellipsoidal particles into each other is the main process responsible for the production of such unique morphology. Time course monitoring of the SDP showed that diffusion of hexadecane and/or PS and/or PEHMA phase into PS/PEHMA/hexadecane composite particles through PS shell which happens based on Ostwald ripening is the main phenomenon which results in the formation of the dents on the surface of final particles. Moreover, the experimental results revealed that in this reaction system, the polymerization develops in a faster manner rather than the SDP employing seed particles having higher MWs. Furthermore, it was observed that particles with different surface morphologies can be produced by using different hydrocarbons. The elimination of small particles which are produced in addition to the cage-like ones via decreasing the concentration of the stabilizer was another interesting finding of this research. The acquired results showed that unstable SDP is expected to be a new concept in polymerization-induced self-assembly (PISA) which employs instability of a dispersion for self-assembly of polymeric particles, and therefore, production of polymeric unique objects.
机译:由低分子量(MW)的甲基丙烯酸2-乙基己酯(EHMA)的种子分散聚合(SDP)获得的表面具有许多凹痕的中空微米级聚苯乙烯(PS)颗粒的形成机理)研究了在十六烷液滴存在下用聚乙烯醇(PVA)稳定的PS颗粒。已经发现,由于获得的复合颗粒的不稳定性,随后的PS椭圆形颗粒彼此扩散而引起的聚(甲基丙烯酸2-乙基己基酯)(PEHMA)/十六烷相的缔合是负责制备聚对苯二甲酸乙二醇酯的主要过程。这样独特的形态。对SDP的时程监测表明,十六烷基和/或PS和/或PEHMA相通过PS壳扩散到PS / PEHMA /十六烷复合颗粒中是基于奥斯特瓦尔德熟化而发生的,这是导致凹痕形成的主要现象。最终粒子的表面。而且,实验结果表明,在该反应体系中,聚合反应比采用具有较高MWs的种子颗粒的SDP更快地进行。此外,观察到可以通过使用不同的烃来产生具有不同表面形态的颗粒。该研究的另一个有趣发现是,通过降低稳定剂的浓度,消除了除笼状颗粒外还产生的小颗粒。获得的结果表明,不稳定的SDP有望成为聚合诱导自组装(PISA)的新概念,该方法利用分散体的不稳定性进行聚合物颗粒的自组装,从而生产聚合物独特的物体。

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