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The Role of Self-Assembly Processes in the Formation of Iron Nanoparticles in Inverse Micelles

机译:自组装过程在逆胶束中形成铁纳米粒子的作用

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A study of the optical properties of iron nanoparticles prepared using the molecular-by-molecular method in the reactions of ion chemical and radiation-chemical reduction in inverse micelles, which were considered as microreactors, made it possible to reveal the features of the formation of metal nanoparticles (NPs) at various stages of physicochemical processes including a spontaneous formation of ordered spatial nanostructures in the postradiation period. The analysis of the spectral data obtained from the measurements in inverse micellar solutions (IMS), which were free of metal ions, provided important information on the evolution of colloid systems. After adding iron ions into an IMS, the Fe NP formation induced by self-assembly processes was detected via characteristic optical absorbance spectra. Based on the results obtained, some peculiarities of the self-assembly processes in IMSs occurring upon various ignition reactions of iron ion reduction and the Fe NP formation were discussed in the work.
机译:使用逐分子法制备在离子化学和辐射 - 化学降低反应胶束中的反应中制备的铁纳米粒子的光学性质,其被认为是微反应器,使得可以揭示形成的特征金属纳米颗粒(NPS)在物理化学方法的各个阶段,包括在Posradiation期间的有序空间纳米结构的自发形成。从逆胶束溶液(IMS)中的测量中获得的光谱数据的分析提供了没有金属离子的重要信息,提供了关于胶体系统的演化的重要信息。在将铁离子添加到IMS之后,通过特征光学吸光光谱检测通过自组装方法诱导的Fe NP形成。基于所得的结果,在工作中,在各种点火反应上发生的IMSS中的自组装方法的一些特殊性,并在工作中讨论了Fe NP形成。

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