• 文献标题:   Detection of DNA Bases via Field Effect Transistor of Graphene Nanoribbon With a Nanopore: Semi-Empirical Modeling
  • 文献类型:   Article
  • 作  者:   WASFI A, AWWAD F, AYESH AI
  • 作者关键词:   dna, graphene, sensor, logic gate, nitrogen, nanoscale device, electrode, dna sequencing, electronic transport, graphene nanoribbon, nanopore, quantum transport
  • 出版物名称:   IEEE TRANSACTIONS ON NANOBIOSCIENCE
  • ISSN:   1536-1241 EI 1558-2639
  • 通讯作者地址:  
  • 被引频次:   3
  • DOI:   10.1109/TNB.2021.3077364
  • 出版年:   2022

▎ 摘  要

DNA sequencing techniques are critical in order to investigate genes' functions. Obtaining fast, accurate, and affordable DNA bases detection makes it possible to acquire personalized medicine. In this article, a semi-empirical technique is used to calculate the electron transport characteristics of the developed z-shaped graphene device to detect the DNA bases. The z-shaped transistor consists of a pair of zigzag graphene nanoribbon (ZGNR) connected through an armchair graphene nanoribbon (AGNR) channel with a nanopore where the DNA nucleobases are positioned. Non-equilibrium Green's function (NEGF) integrated with semi-empirical methodologies are employed to analyze the different electronic transport characteristics. The semi-empirical approach applied is an extension of the extended Huckel (EH) method integrated with self-consistent (SC) Hartree potential. By employing the NEGF+SC-EH, it is proved that each one of the four DNA nucleobases positioned within the nanopore, with the hydrogen passivated edge carbon atoms, results in a unique electrical signature. Both electrical current signal and transmission spectrum measurements of DNA nucleobases inside the device's pore are studied for the different bases with modification of their orientation and lateral translation. Moreover, the electronic noise effect of various factors is studied. The sensor sensitivity is improved by using nitrogen instead of hydrogen to passivate the nanopore and by adding a dual gate to surround the central semiconducting channel of the z-shaped graphene nanoribbon.