纳米孔
纳米技术
石墨烯
纳米孔测序
材料科学
生物传感器
离子键合
DNA
DNA测序
离子
化学
生物化学
有机化学
作者
Hu Qiu,Wanqi Zhou,Wanlin Guo
出处
期刊:ACS Nano
[American Chemical Society]
日期:2021-11-29
卷期号:15 (12): 18848-18864
被引量:79
标识
DOI:10.1021/acsnano.1c07960
摘要
Nanopore techniques offer a low-cost, label-free, and high-throughput platform that could be used in single-molecule biosensing and in particular DNA sequencing. Since 2010, graphene and other two-dimensional (2D) materials have attracted considerable attention as membranes for producing nanopore devices, owing to their subnanometer thickness that can in theory provide the highest possible spatial resolution of detection. Moreover, 2D materials can be electrically conductive, which potentially enables alternative measurement schemes relying on the transverse current across the membrane material itself and thereby extends the technical capability of traditional ionic current-based nanopore devices. In this review, we discuss key advances in experimental and computational research into DNA sensing with nanopores built from 2D materials, focusing on both the ionic current and transverse current measurement schemes. Challenges associated with the development of 2D material nanopores toward DNA sequencing are further analyzed, concentrating on lowering the noise levels, slowing down DNA translocation, and inhibiting DNA fluctuations inside the pores. Finally, we overview future directions of research that may expedite the emergence of proof-of-concept DNA sequencing with 2D material nanopores.
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