纳米孔
纳米技术
纳米孔测序
石墨烯
DNA
纳米
机制(生物学)
材料科学
DNA测序
化学物理
化学
物理
生物化学
量子力学
复合材料
作者
Xiaojing Lin,Haonan Chen,Gensheng Wu,Jiajia Zhao,Yin Zhang,Jingjie Sha,Wei Si
标识
DOI:10.1021/acs.jpclett.4c00672
摘要
In the past few decades, nanometer-scale pores have been employed as powerful tools for sensing biological molecules. Owing to its unique structure and properties, solid-state nanopores provide interesting opportunities for the development of DNA sequencing technology. Controlling DNA translocation in nanopores is an important means of improving the accuracy of sequencing. Here we present a proof of principle study of accelerating DNA captured across targeted graphene nanopores using surface charge density and find the intrinsic mechanism of the combination of electroosmotic flow induced by charges of nanopore and electrostatic attraction/repulsion between the nanopore and ssDNA. The theoretical study performed here provides a new means for controlling DNA transport dynamics and makes better and cheaper application of graphene in molecular sequencing.
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