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Rapid fabrication of solid-state nanopores with high reproducibility over a large area using a helium ion microscope

机译:快速制造的固态纳米孔在大面积使用高重现性氦离子显微镜

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The fabrication of solid-state nanopores in an insulating membrane has attracted much attention for bio-molecule analysis such as DNA sequencing and detection in recent years. For practical applications and device integration, the challenges include precise size control for sub 10 nm nanopores, excellent repeat-ability and rapid fabrication over a large area to reduce the cost for mass production. A helium ion beam could provide an effective fabrication approach to produce such solid-state nanopores. It is easy to control the nanopore size and reach sub 10 nm pore size with a simple change in the milling time with an appropriate ion beam current. Here we report new results in a set of experiments demonstrating that with a small range of stage automatized motions and equal mill times one can obtain good fabrication reproducibility in nanopore sizes (10 variation in size). The automation in the stage motion and milling time opens a door for the rapid mass production of nanopore chips over a wafer size of several inches.
机译:固态纳米孔的加工绝缘膜引起了大量关注bio-molecule分析DNA测序等近年来和检测。应用程序和设备集成挑战包括精确的大小控制子10 nm纳米孔,优秀的repeat-ability和快速制备大面积减少为大规模生产成本。提供一个有效的制造方法产生这样的固态纳米孔。控制纳米孔大小和达到子10纳米在铣削孔隙大小与一个简单的改变时间和一个适当的离子束电流。我们报告的结果是一组实验证明小范围的阶段自动化的动作等轧机乘以1获得制备重现性良好纳米孔大小(& 10%的变化大小)。自动化的阶段运动和研磨时间打开一扇门的快速批量生产纳米孔在晶圆芯片大小的几个英寸。

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