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Immobilization of Dendrimers on Si-C Linked Carboxyalic Acid-Terminated Monolayers on Silicon(111)

机译:将树枝状聚合物固定在硅上的Si-C连接的羧酸封端的单分子膜上(111)

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摘要

Poly(amidoamine) dendrimers were attached to activated undecanoic acid monolayers, covalently linked to smooth silicon surfaces via Si-C bonds. The resulting ultra-thin dendrimer films were characterized by X-ray photoelectron spectroscopy (XPS), X-ray reflectometry (XR) and atomic force microscopy (AFM). XPS results suggested amide bond formation between the dendrimer and the surface carboxylic acid groups. XR yielded thicknesses of 10 Šfor the alkyl region of the undecanoic acid monolayer and 12 Šfor the dendrimer layer, considerably smaller than the diameter of these spherical macromolecules in solution. This was consistent with AFM images showing collapsed dendrimers on the surface. It was concluded that the deformation arose from a large number of amine groups on the surface of each dendrimer reacting efficiently with the activated surface, whereby the dendrimers can deform to fill voids while spreading over the activated surface to form a homogeneous macromolecular layer.
机译:聚(酰胺基胺)树状大分子连接到活化的十一烷酸单层,并通过Si-C键共价连接到光滑的硅表面。通过X射线光电子能谱(XPS),X射线反射法(XR)和原子力显微镜(AFM)对所得的超薄树枝状聚合物膜进行表征。 XPS结果表明在树枝状聚合物和表面羧酸基团之间形成酰胺键。 XR生成的十一烷酸单层烷基区域的厚度为10Å,树枝状聚合物层的厚度为12Å,大大小于溶液中这些球形大分子的直径。这与AFM图像一致,表明表面上的树枝状聚合物塌陷。结论是,变形是由于每个树枝状聚合物表面上的大量胺基与活化表面有效反应而引起的,由此树枝状聚合物可以变形以填充空隙,同时散布在活化表面上以形成均匀的大分子层。

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