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Dendritic chemistry applied to the construction of tailored functional nanomaterials: Synthesis and characterization of gold nanoparticle-cored dendrimers (NCDs)

机译:树枝状化学用于定制功能纳米材料的构建:金纳米颗粒核树枝状聚合物(NCD)的合成和表征

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摘要

A family of Newkome-type dendritic molecules bearing a disulfide anchor group, different peripheral groups (-COOtBu or-COOH) and sizes or generations (Gn=0-2) was synthesized and used as ligand for the synthesis of gold nanoparticle-cored dendrimers (NCDs). These hybrid materials were characterized by means of UV-vis spectroscopy, TEM, and IR and NMR spectroscopies, finding that the capping molecules of the organic shell determine the solubility and stability of the different NCDs, as well as the characteristics of the inorganic core through a dendritic control characteristic for Newkome-type ligands. Remarkably, a combination of detailed IR and NMR studies allows for studying the ligand-ligand and ligand-core interactions that take place in these materials. It is demonstrated that concepts, techniques and methods normally used in organic and dendritic chemistry, such as the synthesis of precisely controlled architectures and their rigorous spectroscopic characterization, can be efficiently applied to engineer novel organic-inorganic hybrid materials with enhanced properties.
机译:合成了带有二硫键锚基,不同外围基团(-COOtBu或-COOH)和大小或世代(Gn = 0-2)的纽科姆型树突分子家族,并用作合成金纳米颗粒核树枝状聚合物的配体(NCD)。这些杂化材料通过紫外-可见光谱,TEM和IR和NMR光谱进行表征,发现有机壳的封端分子决定了不同NCD的溶解度和稳定性,以及通过Newkome型配体的树突控制特征。值得注意的是,详细的IR和NMR研究相结合,可以研究在这些材料中发生的配体-配体和配体-核心相互作用。结果表明,通常用于有机和树枝状化学的概念,技术和方法,例如精确控制的结构的合成及其严格的光谱表征,都可以有效地应用于设计具有增强特性的新型有机-无机杂化材料。

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