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Tripod-shaped molecules: Synthesis and immobilization on Au(111) substrates

机译:三脚架形分子:合成和固定在Au(111)衬底上

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We describe design and synthesis of novel tripod-shaped molecules that are potentially capable of mono-molecular assembly on noble metal substrates, maintaining, due to their rigidity and specific geometry, the orientation of the functional arm in a perpendicular fashion with respect to the substrate. Using a combination of X-ray photoelectron spectroscopy, X-ray absorption spectroscopy and atomic force microscopy, the ability of these molecules to form well-defined and densely packed self-assembled monolayers (SAMs) on Au(1 1 1) was demonstrated, with the majority of the molecules adsorbed in the predefined tripodal geometry, relying on the thiolate-gold anchors. The functionality of the respective monomolecular templates was proved by click reaction between the terminal alkyne groups of the monolayers and complementary azide-substituted substituent (theophylline), which served potentially as specific protein receptor. The resulting theophylline-terminated films were successfully tested for specific protein adsorption, verifying the validity and reliability of the presented concept, in terms of the tripod design and its "activation" by the click reaction.
机译:我们描述了新颖的三脚架状分子的设计和合成,这些分子可能能够在贵金属基底上进行单分子组装,由于它们的刚性和特定的几何形状,其功能臂相对于基底的垂直方向得以保持。结合使用X射线光电子能谱,X射线吸收能谱和原子力显微镜,证明了这些分子在Au(1 1 1)上形成定义明确且密集堆积的自组装单分子层(SAMs)的能力,大部分分子都吸附在预定的三脚架几何形状上,这取决于硫醇盐-金锚。通过在单分子层的末端炔基与互补的叠氮化物取代的取代基(茶碱)之间的点击反应证明了各个单分子模板的功能,后者可能用作特定的蛋白质受体。通过三脚架设计及其通过点击反应的“激活”,成功地测试了所得茶碱封端的膜对特定蛋白质的吸附,验证了所提出概念的有效性和可靠性。

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