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首页> 外文期刊>Macromolecules >Synthesis of Y-Shaped Polymer Brushes on Silica Particles and Hierarchical Surface Structures Fabricated by the Coassembly Approach
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Synthesis of Y-Shaped Polymer Brushes on Silica Particles and Hierarchical Surface Structures Fabricated by the Coassembly Approach

机译:合作方法制造的二氧化硅颗粒和层级结构的Y形聚合物刷的合成

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Coassembly of polymer brushes and linear polymers in selective solvents provides a unique method for the fabrication of surface nanostructures on solids. However, some fundamental problems, including the effect of architecture of polymer brushes on the surface coassembly and the thermal dynamic process of the assembly, are left unsolved. To solve the fundamental problems, in this research we synthesized Y-shaped polymer brushes on silica particles and studied the coassembly mechanism of the Y-shaped polymer brushes and linear block copolymers (BCPs). Poly(ethylene glycol)-block-polystyrene (PEG-b-PS) with a pyridyl disulfide group at the junction point (PEG-(SS-py)-PS) was synthesized by a combination of click chemistry, thiol-disulfide exchange reaction, and reversible addition-fragmentation chain transfer polymerization. The block copolymer and the precursors were characterized with H-1 NMR, C-13 NMR, size exclusion chromatography, and matrix-assisted laser desorption ionization time-of-flight mass spectrometry. PEG-(SS-py)-PS chains were anchored to the thiol-modified silica particles by the thiol-disulfide exchange reaction, and Y-shaped polymer brushes with PEG and PS arms were prepared on silica particles (PEG/PS-SiO2). Coassemblies of PEG/PS Y-shaped polymer brushes and linear PEG-b-PS BCPs with different PS block lengths were studied. In THE/methanol mixtures (1/7, by volume), BCP chains and PEG/PS brushes can coassemble into surface structures. The PS block length and BCP concentration play key roles in the fabrication of surface structures. With an increase in PS block length, fewer BCP chains are organized onto the surfaces of silica particles due to the limited surface area. Different morphologies were observed in the coassembly of Y-shaped polymer brushes and linear BCPs. In the coassembly of PEG/PS-SiO2 and PEG-b-PS89, only spherical micelles are formed on silica particles. At high BCP concentrations, Y-shaped polymer brushes and PEG-b-PS143 chains coassemble into surface wormlike structures on silica particles. In the coassembly of PEG/PS-SiO2 and PEG-b-PS306, layered surface structures and fused vesicles are formed on silica particles. This research paves a new approach to the fabrication of hierarchical nanostructures on solid surfaces.
机译:在选择性溶剂中的聚合物刷和线性聚合物的配合提供了一种用于在固体上制造表面纳米结构的独特方法。然而,一些基本问题,包括聚合物刷在表面合作和组件的热动力过程中的架构的影响,留下了未解决的。为了解决基本问题,在本研究中,我们在二氧化硅颗粒上合成Y形聚合物刷,并研究了Y形聚合物刷和线性嵌段共聚物(BCPS)的共组合机构。聚(乙二醇)-Block-聚苯乙烯(PEG-B-PS)在结点处用吡啶基二硫键(PEG-(SS-PY)-PS)由Click Chathery,二硫化物 - 二硫化物交换反应合成,可逆添加 - 碎片链转移聚合。嵌段共聚物和前体的特征在于H-1 NMR,C-13 NMR,尺寸排阻色谱和基质辅助激光解吸电离飞行时间质谱法。通过硫醇二硫化物交换反应将PEG-(SS-PY)-PS链固定在硫醇改性的二氧化硅颗粒上,并在二氧化硅颗粒上制备用PEG和PS臂的Y形聚合物刷(PEG / PS-SiO 2) 。研究了PEG / PS Y形聚合物刷和具有不同PS块长度的线性PEG-B-PS BCP的共用。在/甲醇混合物中(1/7,体积),BCP链和PEG / PS刷子可以共用进入表面结构。 PS块长度和BCP浓度在表面结构的制造中起键角色。随着PS块长度的增加,由于表面积有限,将更少的BCP链组织到二氧化硅颗粒的表面上。在Y形聚合物刷和线性BCP的合作中观察到不同的形态。在PEG / PS-SiO 2和PEG-B-PS89的配合物中,在二氧化硅颗粒上仅形成球形胶束。在高BCP浓度下,Y形聚合物刷和PEG-B-PS143链中的链接进入二氧化硅颗粒上的表面蠕虫状结构。在PEG / PS-SiO 2和PEG-B-PS306的配合物中,在二氧化硅颗粒上形成层状表面结构和熔体囊泡。本研究铺平了一种新的方法在固体表面上制造了分层纳米结构的制造。

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