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Showing 1 to 4 of 4 for “"semiconductor-electrolyte interface"”.

  1. Exploring and exploiting charge-carrier confinement in semiconductor nanostructures : heterodimensionality in sub-monolayer InAs in GaAs and photoelectrolysis using type-II heterojunctions

    In this thesis, semiconductor nanostructures are studied, both experimentally and theoretically, to help aid the development of two diverse and important technologies. Firstly, charge-carrier confinement in stacked sub-monolayer (SML) InAs in GaAs: SML deposition results in the formation of In-rich …

    lancaster Repository record for Exploring and exploiting charge-carrier confinement in semiconductor nanostructures : heterodimensionality in sub-monolayer InAs in GaAs and photoelectrolysis using type-II heterojunctions (opens in a new tab)

  2. Probing structure-function relationships at catalytic surfaces with emerging electroanalytical tools

    … role in understanding reactivity at well-defined interfaces. However, among these techniques, there is a need for a quantitative technique that can directly access reactivity in situ and can study the impact of local surface structure on adsorbate reactivity. Scanning electrochemical microscopy …

    uiuc Repository record for Probing structure-function relationships at catalytic surfaces with emerging electroanalytical tools (opens in a new tab)

  3. Open-Gate Junction Field-Effect Transistor for Chemical and Biomolecular Analysis

    … from Bergveld's pioneering work on metal-oxide semiconductor-based FETs, which were modified to create ISFETs. The core innovation behind ISFETs and BioFETs was the realization that replacing the metal gate of a MOSFET-like structure with an ion-sensitive membrane could transform the device into …

    york Repository record for Open-Gate Junction Field-Effect Transistor for Chemical and Biomolecular Analysis (opens in a new tab)

  4. Surface Charge Regulation Effects on Fluidic Nanoscale Systems

    … nite-size e ects. Chemical equilibria at the interface is accounted for by coupling these methods with charge regulating theory. The e ects of charge regulation lead to several novel predictions about uidic nanoscale systems including pH dependent conductivities, reduced stability of doped …

    unm Repository record for Surface Charge Regulation Effects on Fluidic Nanoscale Systems (opens in a new tab)