Global ETD Search

Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.

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Showing 1 to 4 of 4 for “"Graphene field-effect transistor (FET)"”.

  1. Organometallic Functionalization of 2D Nanomaterials for Energy and Medical Applications

    … nanomaterials, with particular emphasis on graphene and hexagonal boron nitride (h-BN). The central theme of this work is the use of coordination-based chemistry to engineer nanoscale interfaces while preserving lattice planarity and charge transport properties that are critical for …

    uic

  2. Substrate-dependent high-field transport and self-heating in graphene transistors

    Over the last decade graphene has attracted much interest for nanoelectronic applications due to its high and symmetrical carrier mobility, and high drift velocity compared to silicon. However, when graphene is placed on insulating substrates such as SiO2 or flexible plastics, its inherent superior …

    uiuc Repository record for Substrate-dependent high-field transport and self-heating in graphene transistors (opens in a new tab)

  3. Understanding and engineering interfacial charge transfer of carbon nanotubes and graphene for energy and sensing applications

    Graphene is a one-atom thick planar monolayer of sp2 -bonded carbon atoms organized in a hexagonal crystal lattice. A single walled carbon nanotube (SWCNT) can be thought of as a graphene sheet rolled up into a seamless hollow cylinder with extremely high length-to-diameter ratio. Their large …

    mit Repository record for Understanding and engineering interfacial charge transfer of carbon nanotubes and graphene for energy and sensing applications (opens in a new tab)

  4. Towards high performance graphene nanoelectronics: materials, contacts and interfaces

    … nanomaterials. More specifically, graphene has been at the forefront of this development for a wide range of macro and nanoelectronic applications due to a combination of unique electrical and thermal properties and an atomically thin lattice (~3.4 Å). Some of these applications …

    uiuc Repository record for Towards high performance graphene nanoelectronics: materials, contacts and interfaces (opens in a new tab)