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A low-noise silicon nitride nanopore device on a polymer substrate

机译:聚合物基板上的低噪声氮化硅纳米孔器件

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摘要

We report a novel low-noise nanopore device employing a polymer substrate. The Si substrate of a fabricated Si-substrate-based silicon nitride (Si3N4) membrane was replaced with a polymer substrate. As such, laser machining was used to make a micro-size hole through the polyimide (PI) substrate, and a thin Si3N4 membrane was then transferred onto the PI substrate. Finally, a nanopore was formed in the membrane using a transmission electron microscope for detection of biomolecules. Compared to the Si-substrate-based device, the dielectric noise was greatly reduced and the root-mean-square noise level was decreased from 146.7 to 5.4 pA. Using this device, the translocation of double-strand deoxyribonucleic acid (DNA) was detected with a high signaloise (S/N) ratio. This type of device is anticipated to be available for future versatile sequencing technologies.
机译:我们报告了一种采用聚合物基材的新型低噪声纳米孔器件。将制成的基于硅衬底的氮化硅(Si3N4)膜的硅衬底替换为聚合物衬底。这样,使用激光加工在聚酰亚胺(PI)基板上制作了一个微孔,然后将薄的Si3N4膜转移到PI基板上。最后,使用透射电子显微镜在膜中形成纳米孔以检测生物分子。与基于硅衬底的器件相比,介电噪声大大降低,并且均方根噪声水平从146.7降至5.4 pA。使用该设备,以高信噪比(S / N)检测到双链脱氧核糖核酸(DNA)的易位。预期这种类型的设备可用于将来的通用测序技术。

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