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Showing 1 to 4 of 4 for “"single-electron tunnelling"”.

  1. Functional nanoelectronic devices: single-electron transport, memristivity, and thermoelectricity in nanoscale flms using self-assembly and graphene

    … on several experimental projects studying electronic transport in thin-flm electronic devices. Self-assembly methods and graphene were used to realise devices contacting films of self-assembled PbS quantum dots. The devices have exhibited single-electron tunnelling with a high yield. The …

    cambridge Repository record for Functional nanoelectronic devices: single-electron transport, memristivity, and thermoelectricity in nanoscale flms using self-assembly and graphene (opens in a new tab)

  2. Parallel Fabrication and Transport Properties of Carbon Nanotube Single Electron Transistors

    Single electron transistors (SET) have attracted significant attention as a potential building block for post CMOS nanoelectronic devices. However, lack of reproducible and parallel fabrication approach and room temperature operation are the two major bottlenecks for practical realization of SET …

    ucf

  3. Electron Tunnelling Study of High-Temperature Superconductors

    … Cambridge. The aim of this work was to use electron tunnelling spectroscopy to measure the density of excitation states of the recently discovered high-temperature superconductors. Tunnelling is the most sensitive method for measuring a superconductor’s energy gap, and historically has …

    cambridge Repository record for Electron Tunnelling Study of High-Temperature Superconductors (opens in a new tab)

  4. Theory of molecular-scale transport in graphene nanojunctions

    A molecular junction consists of a single molecule or self-assembled monolayer (SAM) placed between two electrodes. It has varieties of functionalities due to quantum interference in nanoscale. Although there exist issues, advantages could still appeal to scientists who wish to investigate …

    lancaster Repository record for Theory of molecular-scale transport in graphene nanojunctions (opens in a new tab)