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A Mild and Efficient Transfer Method of Two-dimensional Materials for the Third Generation DNA Sequencing

机译:第三代DNA测序的二维材料温和高效的转移方法

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Nanopore-based devices are emerging as unique technique for fast and high-resolution detection of DNA bases. Recently, the two-dimensional (2D) materials have been identified as promising materials for nanopore devices due to its high sensitivity and label-free sensing of DNA bases. It is really challenging to transfer nanoscale film structure onto target substrates to fabricate nanopore devices of 2D materials. Herein, we report a mild and efficient transfer method based on the mediator of poly-propylene carbonate and elastic stamp. Through this method, most of the 2D materials are able to be transferred onto fragile substrates without hurting the substrate. Experimental observation shows that fabricated nanostructures adhere to the surface of substrates closely free of wrinkles and bubbles. Moreover, this method enables the fabrication of multilayered structures of complimentary 2D materials and offers the potential method to fabricate functionalized devices.
机译:基于纳米孔的设备是作为DNA基础的快速和高分辨率检测的独特技术。最近,由于其对DNA碱基的高灵敏度和无标记感测,二维(2D)材料被识别为纳米孔装置的有希望的材料。将纳米镜头薄膜结构转移到靶底物上以制造2D材料的纳米孔装置真是挑战。在此,我们报告了基于聚环碳酸酯和弹性印模的介质的温和高效的转移方法。通过该方法,大多数2D材料能够在不损害基板上转移到脆弱的基板上。实验观察结果表明,制造的纳米结构粘附在紧密不含皱纹和气泡的基材上。此外,该方法使得能够制造互补2D材料的多层结构,并提供制造官能化器件的潜在方法。

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