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Information Journal Paper

Title

Investigation of Graphene and Silicene-DNA nanostructures: DNA Sensing

Pages

  1-12

Abstract

 In this paper, the electrical transport of graphene and silicene nanostructures connected to two semi-infinite graphene and silicene electrodes have been investigated. In these structures, we created nanopores and passed the DNA molecule through the nanopore. Using the Green's Function method and Tight binding approximation, two types of systems with zigzag edges in graphene and silicene have been investigated. By connecting the nanoribbons to the metal electrodes, the created current passes from the nanopore and DNA, from the left to the right. This electric current flow increases the system's sensitivity to the organic DNA bases. We have introduced a new scheme for DNA sequencing.

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  • Cite

    APA: Copy

    Mohammadi, Saeedeh, Esmailpour, Mohammad, & KHOEINI, FARHAD. (2020). Investigation of Graphene and Silicene-DNA nanostructures: DNA Sensing. JOURNAL OF RESEARCH ON MANY BODY SYSTEMS, 10(2 ), 1-12. SID. https://sid.ir/paper/399717/en

    Vancouver: Copy

    Mohammadi Saeedeh, Esmailpour Mohammad, KHOEINI FARHAD. Investigation of Graphene and Silicene-DNA nanostructures: DNA Sensing. JOURNAL OF RESEARCH ON MANY BODY SYSTEMS[Internet]. 2020;10(2 ):1-12. Available from: https://sid.ir/paper/399717/en

    IEEE: Copy

    Saeedeh Mohammadi, Mohammad Esmailpour, and FARHAD KHOEINI, “Investigation of Graphene and Silicene-DNA nanostructures: DNA Sensing,” JOURNAL OF RESEARCH ON MANY BODY SYSTEMS, vol. 10, no. 2 , pp. 1–12, 2020, [Online]. Available: https://sid.ir/paper/399717/en

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