• Login
    View Item 
    •   SMARTech Home
    • College of Engineering (CoE)
    • School of Materials Science and Engineering (MSE)
    • Polymers and Nano Science Chemistry
    • Polymers and Nano Science Chemistry Publications
    • View Item
    •   SMARTech Home
    • College of Engineering (CoE)
    • School of Materials Science and Engineering (MSE)
    • Polymers and Nano Science Chemistry
    • Polymers and Nano Science Chemistry Publications
    • View Item
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Enhanced Electrical Properties of Anisotropic Conductive Adhesive With $pi$ -Conjugated Self-Assembled Molecular Wire Junctions

    Thumbnail
    View/Open
    CPWong_IEEE_165.pdf (875.5Kb)
    Date
    2009-09
    Author
    Zhang, Rongwei
    Li, Yi
    Yim, Myung Jin
    Moon, Kyoung-Sik
    Lu, Daoqiang
    Wong, C. P.
    Metadata
    Show full item record
    Abstract
    We have investigated the electrical properties of anisotropic conductive adhesive (ACA) joint using submicrometer- sized ( 500 nm in diameter) silver (Ag) particle as conductive filler with the effect of -conjugated self-assembled molecular wires. The ACAs with submicrometer-sized Ag particles have higher current carrying capability ( 3400 mA) than those with micro-sized Au-coated polymer particles ( 2000 mA) and Ag nanoparticles ( 2500 mA). More importantly, by construction of -conjugated self-assembled molecular wire junctions between conductive particles and integrated circuit (IC)/substrate, the electrical conductivity has increased by one order of magnitude and the current carrying capability of ACAs has improved by 600 mA. The crucial factors that govern the improved electrical properties are discussed based on the study of alignments and thermal stability of molecules on the submicrometer-sized Ag particle surface with surface-enhanced Raman spectroscopy (SERS), providing a fundamental understanding of conduction mechanism in ACA joints and guidelines for the formulation of high-performance ACAs in electronic packaging industry.
    URI
    http://hdl.handle.net/1853/30602
    Collections
    • Polymers and Nano Science Chemistry Publications [61]

    Browse

    All of SMARTechCommunities & CollectionsDatesAuthorsTitlesSubjectsTypesThis CollectionDatesAuthorsTitlesSubjectsTypes

    My SMARTech

    Login

    Statistics

    View Usage StatisticsView Google Analytics Statistics
    facebook instagram twitter youtube
    • My Account
    • Contact us
    • Directory
    • Campus Map
    • Support/Give
    • Library Accessibility
      • About SMARTech
      • SMARTech Terms of Use
    Georgia Tech Library266 4th Street NW, Atlanta, GA 30332
    404.894.4500
    • Emergency Information
    • Legal and Privacy Information
    • Human Trafficking Notice
    • Accessibility
    • Accountability
    • Accreditation
    • Employment
    © 2020 Georgia Institute of Technology