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Do-It-Yourself Pyramidal Mold for Nanotechnology

机译:自己动手制作纳米技术的金字塔形模具

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摘要

The handcrafted fabrication of a pyramidal mold on a silicon wafer for nanopatterning was investigated. This process started with the manual delivery of an aqueous glycerol solution onto the SiO2/Si wafer using a micropipette and subsequent drying to form a hemisphere whose diameter is in the range of hundreds of micrometers. A coating of polystyrene (PS) onto this wafer generates a circular hole caused by dewetting. Subsequently, anisotropic wet-etching with the PS film as a mask produces a pyramidal trench, whose apex approaches hundreds of nanometers. Various elastomeric materials were casted into this pyramidal mold. A pyramidal tip mounted on a simple micropositioner was used for electrochemistry and patterning of a protein. First, an agarose hydrogel was cast with a hydrogel pen for the electrochemical reaction (HYPER). The redox reaction at the HYPER–electrode interface demonstrated the characteristics of an ultramicroelectrode or bulk electrode based on the contact area. Second, the pyramidal polydimethylsiloxane served as a polymer pen for the contact printing of silane on a glass substrate. After the successive immobilizationof biotin and avidin with fluorescence labeling, the resulting fluorescenceimage demonstrated the successful patterning of the protein. Thisnew process for the creation of a pyramidal mold, referred to as a“do-it-yourself” process, offers advantages to nonspecialistsin nanotechnology compared to conventional lithography, specificallysimplicity, rapidity, and low cost.
机译:研究了在硅晶片上进行纳米图案化的金字塔形模具的手工制作。该过程开始于使用微量移液器将甘油水溶液手动输送到SiO2 / Si晶片上,然后干燥以形成直径在数百微米范围内的半球。在该晶片上的聚苯乙烯(PS)涂层会由于去湿而产生一个圆孔。随后,以PS膜为掩模的各向异性湿法蚀刻产生了金字塔形沟槽,其顶点接近数百纳米。将各种弹性体材料浇铸到此金字塔形模具中。安装在简单微型定位器上的金字塔形尖端用于电化学和蛋白质构图。首先,用水凝胶笔浇铸琼脂糖水凝胶以进行电化学反应(HYPER)。 HYPER-电极界面处的氧化还原反应证明了基于接触面积的超微电极或体电极的特性。第二,金字塔形的聚二甲基硅氧烷用作聚合物笔,用于在玻璃基板上进行硅烷的接触印刷。连续固定后荧光标记的生物素和抗生物素蛋白产生的荧光图像显示了蛋白质的成功构图。这个创建金字塔形模具的新过程,称为“自己动手”流程为非专家提供了优势在纳米技术中与传统光刻相比,特别是简单,快速和低成本。

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