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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Conductive AFM patterning on oligo(ethylene glycol)-terminated alkyl monolayers on silicon substrates: Proposed mechanism and fabrication of avidin patterns
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Conductive AFM patterning on oligo(ethylene glycol)-terminated alkyl monolayers on silicon substrates: Proposed mechanism and fabrication of avidin patterns

机译:在硅基板上的低聚乙二醇末端烷基单层上进行导电AFM图案化:亲和素图案的建议机理和制备

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Micro- and nanopatterns of biomolecules on inert, ultrathin platforms on nonoxidized silicon are ideal interfaces between silicon-based microelectronics and biological systems. We report here the local oxidation nanolithography with conductive atomic force microscopy (cAFM) on highly protein-resistant, oligo(ethylene glycol) (OEG)-terminated alkyl monolayers on nonoxidized silicon substrates. We propose a mechanism for this process, suggesting that it is possible to oxidize only the top ethylene glycol units to generate carboxylic acid and aldehyde groups on the film surface. We show that avidin molecules can be attached selectively to the oxidized pattern and the density can be varied by altering the bias voltage during cAFM patterning. Biotinylated molecules and nanoparticles are selectively immobilized on the resultant avidin patterns. Since one of the most established methods for immobilization of biomolecules is based on avidin-biotin binding and a wide variety of biotinylated biomolecules are available, this approach represents a versatile means for prototyping any nanostructures presenting these biomolecules on silicon substrates.
机译:在非氧化硅上的惰性超薄平台上的生物分子的微米和纳米图案是基于硅的微电子和生物系统之间的理想界面。我们在此报告了在非氧化硅基板上具有高度蛋白质抵抗性,低聚乙二醇(OEG)端接的烷基单层上的导电原子力显微镜(cAFM)的局部氧化纳米光刻技术。我们提出了该过程的机理,表明可以仅氧化顶部的乙二醇单元以在膜表面上产生羧酸和醛基。我们表明,亲和素分子可以选择性地连接到氧化的图案,并且可以通过在cAFM图案化过程中改变偏置电压来改变密度。将生物素化的分子和纳米颗粒选择性地固定在所得抗生物素蛋白图案上。由于最成熟的固定生物分子的方法之一是基于抗生物素蛋白-生物素的结合,并且有各种各样的生物素化生物分子可供使用,因此这种方法代表了一种通用的方法,可以对在硅基板上呈递这些生物分子的任何纳米结构进行原型设计。

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