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Multiplexed Dip Pen Nanolithography patterning by simple desktopnanolithography platform

机译:简易桌面料平台图案化的多路复用浸渍笔纳米光刻

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Multiplexed patterning in the micro-scale has been required in order to accomplish functional bio-materials templating on the subcellular length scale. Multiplexed bio-material patterns can be used in several fields: high sensitivity DNA/protein chip development, cell adhesion/differentiation studies, and biological sensor applications. Especially, two or more materials' patterning in subcellular length scale is highly demanding to develop a multi-functional and high-integrated chip device. The multiplexing patterning of two or more materials is a challenge because of difficulty in an alignment and a precision of patterning. In this work, we demonstrate that multiplexed dip pen nanolithography (DPN) patterning up to four different material inks by means of using recently developed new generation nanolithography platform (NLP 2000~(TM), NanoInk, Inc., Skokie, IL). Ink materials were prepared by adding different colored fluorescent dyes to matrix carrier materials, such as poly(ethylene glycol) dimethacrylate (PEG-DMA) and lipid material (1,2- dioleoyl-sn-glycero-3-phosphocholine, DOPC). Finally, dot-array patterns of four different inks were obtained in 50 x 50 μm~2 area. This lithography platform is capable of patterning 12 separate materials within micrometer areas by efficient use of the available MEMS accessories. This number can be scaled up further with development of new accessories.
机译:为了在亚细胞长度尺度上实现功能性生物材料模板,需要多路复用图案化。多路复用的生物材料图案可用于若干领域:高灵敏度DNA /蛋白质芯片开发,细胞粘附/分化研究和生物传感器应用。特别是,亚细胞长度尺度的两个或更多材料的图案化是高要求多功能和高集成的芯片装置。由于难以对准和图案化精度,两种或更多种材料的复用图案是挑战。在这项工作中,我们通过使用最近开发的新一代纳米线平台(NLP 2000〜(TM),Nanoink,Inc.,Skokie,IL)来证明多路复用的DIP Pen纳米光刻(DPN)通过使用最多四种不同的材料墨水进行图案化。通过向基质载体材料添加不同的颜色荧光染料来制备油墨材料,例如聚(乙二醇)二甲基丙烯酸酯(PEG-DMA)和脂质材料(1,2-二脲-Sn-甘油-3-磷光啉,DOPC)。最后,在50×50μm〜2面积中获得四种不同墨水的点阵列图案。该光刻平台能够通过有效地使用可用的MEMS配件,在微米区域内进行图案化12个单独的材料。可以随着新配件的开发进一步扩展此数字。

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