• DocumentCode
    2610792
  • Title

    Fast DNA sequencing via transverse differential conductance

  • Author

    He, Yuhui ; Scheicher, Ralph H. ; Grigoriev, Anton ; Ahuja, Rajeev ; Long, Shibing ; Ji, Zhuoyu ; Yu, Zhaoan ; Liu, Ming

  • Author_Institution
    Lab. of nano-Fabrication & Novel Devices Integrated Technol., Chinese Acad. of Sci., Beijing, China
  • fYear
    2010
  • fDate
    6-8 Sept. 2010
  • Firstpage
    313
  • Lastpage
    316
  • Abstract
    We propose using characteristic transverse differential conductance for solid-state nanopore-based DNA sequencing and have explored this idea by performing molecular dynamics simulations on the translocation progress of single-stranded DNA molecule through the nanopore, and calculating the associated transverse differential conductance. Our results show that measurement of the transverse differential conductance is suitable to successfully discriminate between the four nucleotide types, and we show that this identification could even withstand electrical noise caused by fluctuations due to changes in the DNA orientation. Our findings demonstrate several compelling advantages of the differential conductance approach, which may lead to important applications in rapid genome sequencing.
  • Keywords
    DNA; biological techniques; molecular biophysics; molecular dynamics method; nanobiotechnology; DNA sequencing; electrical noise; molecular dynamics simulations; nanopore; rapid genome sequencing; transverse differential conductance; DNA; Electrodes; Fluctuations; Genomics; Gold; Nanoscale devices; Noise;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Simulation of Semiconductor Processes and Devices (SISPAD), 2010 International Conference on
  • Conference_Location
    Bologna
  • ISSN
    1946-1569
  • Print_ISBN
    978-1-4244-7701-2
  • Electronic_ISBN
    1946-1569
  • Type

    conf

  • DOI
    10.1109/SISPAD.2010.5604495
  • Filename
    5604495