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Neutron reflectivity on polymer multilayers doped with magnetic nanoparticles

机译:聚合物多层掺杂磁性纳米粒子的中子反射率

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The aim of this work is to elaborate nanocomposite thin films sensitive to a magnetic field by incorporating magnetic nanoparticles in a symmetrical diblock copolymer matrix organized in lamellae on plane substrates. On the one hand, the symmetrical diblock copolymer P(n-BMA)-b-PS is synthesized by ATRP and characterized by several methods. On the other hand, nanoparticles made of maghemite y-Fe_20_3 are functionalized with PS using the "graftingfrom " technique in order to make them compatible with polystyrene and to insert them in PS lamellae. Composite films are elaborated by "spin coating" a solution containing both the γ-Fe_2O_3@PS core-shell nanoparticles and the copolymer onto a silicon substrate. After annealing, these films are characterized mainly by AFM and neutron reflectivity to investigate the lamellar order.
机译:该作品的目的是通过在平面衬底上在薄片上组织的对称二嵌段共聚物基质中掺入磁性纳米颗粒中的磁性纳米颗粒来制定对磁场敏感的纳米复合薄膜。一方面,对称二嵌段共聚物P(N-BMA)-B-PS由ATRP合成,其特征在于几种方法。另一方面,使用“嫁接起草”技术用PS官能化纳米粒子,用“嫁接起草”技术官能化,以使其与聚苯乙烯相容并将其插入PS Lamellae中。通过将γ-Fe_2O_3 / / 3 PS核 - 壳纳米粒子和共聚物的“旋涂”溶液阐述了复合膜,并将共聚物置于硅衬底上。退火后,这些薄膜的特征在于AFM和中子反射率,以研究层状顺序。

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