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Showing 1 to 8 of 8 for “"substrate engineering"”.

  1. Substrate engineering for monolithic integration of III-V semiconductors with Si CMOS technology

    Ge virtual substrates, fabricated using Si1-xGex-.Ge, compositionally graded buffers, enable the epitaxial growth of device-quality GaAs on Si substrates, but monolithic integration of III-V semiconductors with Si CMOS using this platform is hampered by the large thickness of the Si1-xGex graded …

    mit Repository record for Substrate engineering for monolithic integration of III-V semiconductors with Si CMOS technology (opens in a new tab)

  2. Integration of Single -Walled Carbon Nanotubes With Gallium Arsenide(110) and Indium Arsenide(110) Surfaces: A Scanning Tunneling Microscopy Study

    … (SWNTs) coupled to GaAs(110) and InAs(110) substrates in ultrahigh vacuum (UHV). Both flat and stepped III-V(110) surfaces were obtained through in situ cleavage and nanotubes subsequently deposited onto the substrates via an UHV-compatible dry contact transfer procedure. STM images indicate …

    uiuc Repository record for Integration of Single -Walled Carbon Nanotubes With Gallium Arsenide(110) and Indium Arsenide(110) Surfaces: A Scanning Tunneling Microscopy Study (opens in a new tab)

  3. Mechanics driven architectures for flexible nanomaterial-based sensors

    … as well as the integration of ultrathin or soft substrates. Notably, nanomaterials offer exciting tunable physical, chemical and electrical properties that significantly surpass their bulk counterparts. As a result, they have captivated academic and industrial interests for use as electrical and …

    uiuc Repository record for Mechanics driven architectures for flexible nanomaterial-based sensors (opens in a new tab)

  4. Assembly and integration of two-dimensional nanomaterials for advanced interfaces and sensors

    … could be integrated with 3D microstructure substrates with a novel and simple substrate engineering technique that utilizes solvent-induced swelling of substrates. In addition, I report on developing flower-like structures (i.e., nanoflowers) of molybdenum disulfide (MoS2) grown by …

    uiuc Repository record for Assembly and integration of two-dimensional nanomaterials for advanced interfaces and sensors (opens in a new tab)

  5. Development of surface-enhanced Raman spectroscopy coupled with nanosubstrates and machine learning to improve food safety

    … explores the development of novel SERS substrates through electrospinning. Electrospun polyacrylonitrile (PAN) nanofibers were functionalized and coated with Au@Ag core–shell nanoparticles to create high-surface-area scaffolds with strong plasmonic enhancement. These electrospun …

    missouri Repository record for Development of surface-enhanced Raman spectroscopy coupled with nanosubstrates and machine learning to improve food safety (opens in a new tab)

  6. Interface Engineering and Substrate Design for Anode-free Lithium Metal Batteries

    … interphases (SEIs). This thesis investigates how substrate structure and interfacial design influence lithium deposition behaviour and reversibility. Emphasis is placed on understanding the role of copper (Cu) current collectors and two-dimensional (2D) materials in regulating lithium nucleation, …

    cambridge Repository record for Interface Engineering and Substrate Design for Anode-free Lithium Metal Batteries (opens in a new tab)

  7. Rational manipulation of substrate-supported graphene by heterogeneity of substrate surface and material composition

    … graphene-based devices graphene is adhered to a substrate that influences its performance, rather than being present in a free standing form. The interaction of graphene with these substrates can lead to deformations that give rise to out-of-plane architectures with new properties such as …

    mit Repository record for Rational manipulation of substrate-supported graphene by heterogeneity of substrate surface and material composition (opens in a new tab)