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IN SITU FORMATION AND GROWTH OF COPPER AND NICKEL NANOPARTICLES IN POLYMER FILMS

机译:薄膜中铜和镍纳米粒子的原位形成和生长

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Research into the preparation of nanocomposites containing metal nanoparticles dispersed in polymer matrices has been triggered by the technologically important applications of these nanocomposites in optics, sensors, and nanoelectronics. The major limitation of these nanocomposite materials is the difficulty of controlling their microstructure, e.g., size, size distribution, and interparticle spacing of the dispersed nanoparticles, during synthetic processes. A technique that allows precise control over composite microstructure is, therefore, indispensable for the preparation of composite materials with desired properties. Recently, in situ synthesis of these metal nanoparticle/polymer composites by the process of dissolution and reduction of metal salts/or complexes within polymeric precursors has been proposed. The advantage of this process is the uniform distribution of the metal source and the structural homogeneity of the precursors, which provides a resultant homogeneous dispersion of nanoparticles in polymer matrix. In this contribution, our recent development of fabrication of metal/polymer nancomposite thin films on glass substrate will be presented. We describe the use of ion-exchangeable, highly cross-linked polymer thin films as a matrix for the synthesis of nanocomposite thin films with embedded Cu and Ni nanoparticles. Using this method, we have successfully controlled the size of metal nanoparticles and thus optical and magnetic properties of the films by varying initial amount of doped metal ions and fabricated nanocomposite thin film patterns directly on glass substrates. The detailed investigation concerning the reduction behavior of metal ions and the changes in chemical structure of the matrix upon annealing will be also presented to provide insight into the appropriate mechanism of this process.
机译:这些纳米复合材料在光学,传感器和纳米电子学中的重要技术应用引发了对制备包含分散在聚合物基质中的金属纳米颗粒的纳米复合材料的研究。这些纳米复合材料的主要限制是在合成过程中难以控制它们的微观结构,例如尺寸,尺寸分布和分散的纳米颗粒的颗粒间间距。因此,允许精确控制复合材料微观结构的技术对于制备具有所需性能的复合材料必不可少。最近,已经提出了通过在聚合物前体中溶解和还原金属盐/或配合物的方法来原位合成这些金属纳米颗粒/聚合物复合物。该方法的优点是金属源的均匀分布和前体的结构均匀性,这提供了所得的纳米颗粒在聚合物基质中的均匀分散。在此贡献中,将介绍我们在玻璃基板上制造金属/聚合物纳米复合薄膜的最新进展。我们描述了使用离子可交换的,高度交联的聚合物薄膜作为基质来合成具有嵌入的Cu和Ni纳米粒子的纳米复合薄膜的方法。使用这种方法,我们已经成功地控制了金属纳米粒子的尺寸,从而控制了薄膜的光学和磁性特性,方法是改变掺杂金属离子的初始量,并直接在玻璃基板上制备纳米复合薄膜图案。还将提供有关金属离子还原行为和退火后基体化学结构变化的详细研究,以深入了解该过程的适当机理。

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