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Selective binding of dye molecules and CdSe nanocrystals on nanostructures generated by AFM lithography of silicon surfaces

机译:染料分子和CdSe纳米晶体在硅表面AFM光刻产生的纳米结构上的选择性结合

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Anchoring optically active molecules or semiconductor nanocrystals on nanostructured surfaces is one of the first steps for building complex structures with variable properties and functions. Electrostatic interactions have been used for selective binding of cationic molecular species on lithographically generated and negatively charged nanostructures. Semiconductor nanocrystals, covered by amphiphilic molecules, have been bound via hydrophobic interactions. Selective binding of cationic Rhodamin 6G molecules to freshly prepared silicon oxide nanostructures as well as the CdSe/ZnS nanocrystals to the surrounding hydrophobic alkyl monolayer could be identified both by optical methods and by atomic force microscopy. The adsorption of CdSe/ZnS nanoparticles was accompanied by self-organization phenomena of the surfactant tri octyl phosphine oxide (TOPO).
机译:在纳米结构化的表面上固定光学活性分子或半导体纳米晶体是构建具有可变特性和功能的复杂结构的第一步。静电相互作用已用于在光刻产生的带负电荷的纳米结构上选择性结合阳离子分子物质。被两亲分子覆盖的半导体纳米晶体已经通过疏水相互作用被结合。阳离子罗丹明6G分子与新鲜制备的氧化硅纳米结构以及CdSe / ZnS纳米晶体与周围的疏水性烷基单层的选择性结合可以通过光学方法和原子力显微镜进行鉴定。 CdSe / ZnS纳米粒子的吸附伴随有表面活性剂三辛基氧化膦(TOPO)的自组织现象。

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