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    • Thesis & Report, BSc (Electrical and Electronic Engineering)
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    •   BracU IR
    • School of Engineering and Computer Science (SECS)
    • Department of Electrical and Electronic Engineering (EEE)
    • Thesis & Report, BSc (Electrical and Electronic Engineering)
    • View Item
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    Bandstru cture observation of graphene nanoribb on and boron-nitride nanoribbon embedded graphene nanoribbon

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    12321043, 12121091 & 12321035_EEE.pdf (5.164Mb)
    Date
    2016-04
    Publisher
    BRAC University
    Author
    Haque, Fatin Farhan
    Duity, Rimi Reza
    Authoi, Syed Shamsia Tanzin
    Metadata
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    URI
    http://hdl.handle.net/10361/7164
    Abstract
    Due to distinctive electronic properties and potential future application in tunable bandgap opening, Graphene Nanoribbon (GNR) has apprehended strong attention. Boron Nitride Nanoribbons (BNNR) exhibit analogous structure. Thus domains of Graphene embedded in Boron Nitride can be synthesized to open a bandgap exposing the semiconductor behavior of Graphene more precisely. A numeric investigation of the impact of GNR embedded in BNNR explains the bandgap tunability as well as transport property of Graphene. This unique versatility is likely to bring a radical change in electrical field not only by encouraging innovation but also by improving the mechanism of existing devices.
    Keywords
    Graphene nanoribb; Boron-nitride nanoribbon
     
    Description
    This thesis report is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2016.
     
    Cataloged from PDF version of thesis report.
     
    Includes bibliographical references (page 76-77).
    Department
    Department of Electrical and Electronic Engineering, BRAC University
    Collections
    • Thesis & Report, BSc (Electrical and Electronic Engineering)

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