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Generation of spatially ordered metal-polymer nanostructures in the irradiated dispersions of poly(acrylic acid)-poly(vinylimidazole)-Cu2+ complexes

机译:在聚(丙烯酸)-poly(乙烯基咪唑)-cu2 +络合物的照射分散体中产生空间有序的金属聚合物纳米结构

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The generation of metal nanostructures by radiation-induced reduction of copper ions in aqueous dispersions of macromolecular complexes of poly(acrylic acid) and polyvinylimidazole has been studied in the pH range of 2.3-4.3. It was shown that an effective coordination number of Cu2+ in the complex with polymer units decreased at lower pH, which resulted in dramatic increase of the nanoparticle formation rate. As demonstrated by transmission electron microscopy, using the poly(acrylic acid)-polyvinylimidazole-Cu2+ complexes as precursors allows one to control the nanoparticle size and promotes assembling of spatially ordered supramolecular structures. As revealed by dynamic light scattering, decreasing the medium pH leads to ripening of the poly(acrylic acid)-polyvinylimidazole-Cu2+ particles. The obtained results provide an evidence for strong effect of the pH value on the spatial organization of nanoparticles in irradiated suspensions. In the case of less acidic medium (at pH 3), assembling of nanoparticles occurs in flabby interpolymer particles, whereas at lower pH the metal nanoparticles are produced in the templates of the perfect macromolecular nanostructures.
机译:在2.3-4.3的pH范围内研究了通过辐射诱导的辐射诱导的辐射诱导的铜离子的铜离子的降低,在2.3-4.3的pH范围内。结果表明,在较低的pH下,具有聚合物单元的复合物中的Cu2 +的有效配位数量降低,导致纳米颗粒形成速率的显着增加。如通过透射电子显微镜证明的,使用聚(丙烯酸) - 聚乙烯基咪唑-Cu2 +络合物作为前体允许人们控制纳米颗粒尺寸并促进空间有序的超分子结构的组装。如动态光散射所揭示,降低培养基pH导致聚(丙烯酸) - 聚乙烯基咪唑-Cu2 +颗粒的成熟。所获得的结果提供了PH值对辐照悬浮液中纳米颗粒的空间组织的强烈效果的依据。在较少酸性介质(在pH3)的情况下,纳米颗粒的组装发生在松弛的互聚物颗粒中,而在较低的pH下,金属纳米颗粒在完美大分子纳米结构的模板中产生。

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