首页> 外文会议>Proceedings of 2007 International Conference on Advanced Fibers and Polymer Materials >Monolayer Formation at the Air-water Interface by Polymer-grafted Colloidal Particles
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Monolayer Formation at the Air-water Interface by Polymer-grafted Colloidal Particles

机译:聚合物接枝胶体粒子在空气-水界面单层形成

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Poly (methyl methacrylate)-grafted colloidal articles were prepared via atom transfer radical polymerization. Particle monolayers were formed at the air-water interface. Estimation of particle monolayer was performed mainly by surface pressure- area isotherm meawurement and SEM observation. PMMA- grafted colloidal silica and PMMA-grafted polystyrene latex with diameter of ca. 100nm formed particle monolayer with lattice-like structure with 300~500nm intervals when molecular weight of grafted PMMA is over 100,000. With lower molecular weight of grafted PMMA, aggregation was observed on the substrate by SEM images. Even at lower graft densities, howener, homogeneous particle monolayer was formed by the PMMA-grafted particle with high molecular weight of grafted PMMA. The key factor in determining particle monolayer structure is the molecular weight of grafted polymer rather than graft density in this system.
机译:通过原子转移自由基聚合制备聚(甲基丙烯酸甲酯)接枝的胶体制品。在空气-水界面处形成颗粒单层。颗粒单层的估计主要通过表面压力-面积等温线测量和SEM观察来进行。 PMMA接枝的胶体二氧化硅和PMMA接枝的聚苯乙烯胶乳,直径约为。当接枝的PMMA的分子量超过100,000时,以100nm形成间隔为300〜500nm的具有格子状结构的颗粒单层。在接枝的PMMA分子量较低的情况下,通过SEM图像在基板上观察到聚集。即使在较低的接枝密度下,由具有高分子量接枝的PMMA的PMMA接枝的颗粒也形成了均化剂,均匀的颗粒单层。确定颗粒单层结构的关键因素是该系统中接枝聚合物的分子量,而不是接枝密度。

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