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Size and Shape Controlled Growth of Molecular Nanostructures on Silicon Oxide Templates

机译:在氧化硅模板上分子纳米结构的尺寸和形状控制的生长

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摘要

A new process for nanoscale fabrication of ordered monolayer films of conjugated organic molecules is presented. The process makes it possible to grow sexithiophene monolayers (T6) at precise locations on a silicon substrate with a high degree of order while preserving the orientation of growth. The process is based on the integration of local oxidation nanolithography of the substrate and template growth of the molecular thin film. The former is used to fabricate silicon oxide arrays of parallel lines of 30-50 nm in width and several microns in length. Template growth arises from the interplay between kinetic growth parameters and preferential interactions with the patterned surface. The result is a monolayer film of organic molecules that conformally mimicks the features of the fabricated motives. This approach could be used to connect molecular domains of well-defined size between metallic electrodes.
机译:提出了一种新的纳米级共轭有机分子有序单层膜制造工艺。该方法使得可以在硅衬底上的精确位置以高度有序的方式生长六噻吩单层(T6),同时保留生长的方向。该过程基于基底的局部氧化纳米光刻与分子薄膜模板生长的整合。前者用于制造宽度为30-50 nm,长度为几微米的平行线的氧化硅阵列。模板的增长来自动力学增长参数和与图案化表面的优先相互作用之间的相互作用。结果是有机分子的单层薄膜共形地模仿了制造动机的特征。该方法可用于在金属电极之间连接尺寸明确的分子域。

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