Graphene Nanoribbon Simulator of Electronic Properties Using MATLAB

被引:6
|
作者
Bin Indra, Izzat Safwan [1 ]
Chin, Huei Chaeng [1 ]
Wong, Kien Liong [1 ]
Goh, Edric [1 ]
Lim, Cheng Siong [1 ]
Tan, Michael Loong Peng [1 ]
机构
[1] Univ Teknol Malaysia, Fac Elect Engn, Skudai 81310, Johor, Malaysia
关键词
Graphene Field Effect Transistor (GFET); Armchair Graphene Nanoribbon (AGNR); Zigzag Graphene Nanoribbon (ZGNR); Graphical User Interface Design Environment (GUIDE);
D O I
10.1166/jno.2018.2247
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this research, a comprehensive simulation tool based on graphene and code named the Graphene Nanoribbon Simulator (GNRSIM) of electronic properties is developed with a graphical user interface (GUI). GNRSIM is based on the tight binding Hamiltonian (TBH) model where the Eigenvalues provide the band structure. The density of states (DOS) is computed by solving Green's Function. The interface of the GNRSIM is generated using the GUI Development Environment (GUIDE) in MATLAB that allows a user to key in four input parameters. The user can select the type of edges of the GNR, namely armchair or zigzag, its chirality (n, m) and the tight binding energy. It can simulate the electronic properties of the semiconductor, including the band structure, and the DOS can calculate the material width and length. These properties are important for understanding the electronic characteristics of nanoscale graphene. The output characteristics are shown graphically on the simulator. GNRSIM is developed to be a stand-alone application software that does not require the installation of MATLAB.
引用
收藏
页码:405 / 414
页数:10
相关论文
共 50 条
  • [1] Temperature Effect on Electronic Properties of Armchair Graphene Nanoribbon
    Nandy, Turja
    Hassan, Asif
    Dutta, Arin
    Tawsif, Ahmad
    2015 INTERNATIONAL CONFERENCE ON ADVANCES IN ELECTRICAL ENGINEERING (ICAEE), 2015, : 336 - 339
  • [2] The electronic and transport properties of the folded zigzag graphene nanoribbon
    Wang, Zhiyong
    Sun, Mengyao
    Zhao, Yayun
    Xiao, Jianrong
    Dai, Xueqiong
    SURFACES AND INTERFACES, 2016, 5 : 72 - 75
  • [3] Effect of Nitrogen Doping on the Electronic Properties of Graphene Nanoribbon
    Kumar, Vipin
    Chattopadhyay, Saikat
    3RD INTERNATIONAL CONFERENCE ON CONDENSED MATTER & APPLIED PHYSICS (ICC-2019), 2020, 2220
  • [4] The Electronic and Transport Properties of Defective Bilayer Graphene Nanoribbon
    Johari, Zaharah
    Auzar, Zuriana
    Alias, N. Ezaila
    JOURNAL OF NANOELECTRONICS AND OPTOELECTRONICS, 2017, 12 (02) : 177 - 183
  • [5] Structural and electronic properties of graphene nanotube-nanoribbon hybrids
    Lee, Chi-Hsuan
    Yang, Chih-Kai
    Lin, Ming-Fa
    Chang, Cheng-Pong
    Su, Wan-Sheng
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2011, 13 (09) : 3925 - 3931
  • [6] Thermoelectric and electronic properties of B-doped graphene nanoribbon
    Jafari, A.
    Ramezani, A. H.
    Fayaz, V
    Hossienkhani, H.
    CANADIAN JOURNAL OF PHYSICS, 2019, 97 (09) : 1027 - 1030
  • [7] GENETIC ALGORITHM FOR CONSTRUCTING GRAPHENE NANORIBBON WITH GIVEN ELECTRONIC TRANSPORT PROPERTIES
    Lobanov, I. S.
    Trifanov, A. I.
    Trifanova, E. S.
    NANOSYSTEMS-PHYSICS CHEMISTRY MATHEMATICS, 2013, 4 (04): : 512 - 523
  • [8] Electronic and transport properties of graphene nanoribbon barbell-shaped heterojunctions
    Price, Miles D. S.
    Cruz-Silva, Eduardo
    Mariano Torres Costa, Ana Luiza
    de Vasconcelos, Fabricio Morais
    Girao, Eduardo Costa
    Zhang, S. B.
    Meunier, Vincent
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2013, 250 (11): : 2417 - 2423
  • [9] Structural and electronic properties of zigzag graphene nanoribbon decorated with copper cluster
    M. Berahman
    M. H. Sheikhi
    A. Zarifkar
    H. Nadgaran
    Journal of Computational Electronics, 2015, 14 : 270 - 279
  • [10] Hierarchical graphene nanoribbon assemblies feature unique electronic and mechanical properties
    Xu, Zhiping
    Buehler, Markus J.
    NANOTECHNOLOGY, 2009, 20 (37)