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Showing 1 to 5 of 5 for “"In2se3"”.

  1. Molecular Beam Epitaxy Synthesis and Characterization of Indium Selenide Films

    … synthesis and physical characterization of In2Se3 films, characterization of the effect of cooling rate on the β→α phase transition, and electrical characterization β-, γ-, and κ-In2Se3 thin-film transistors has been demonstrated. The effects of substrate temperature, substrate choice, and …

    gatech Repository record for Molecular Beam Epitaxy Synthesis and Characterization of Indium Selenide Films (opens in a new tab)

  2. STM Study of 2D Metal Chalcogenides and Heterostructures

    … focuses on phase transformation in 2D In2Se3. We observed that 2D In2Se3 layers with thickness ranging from single to ~20 layers stabilized at the beta phase with a superstructure at room temperature. After cooling down to around 180 K, the beta phase converted to a more stable beta' …

    vt Repository record for STM Study of 2D Metal Chalcogenides and Heterostructures (opens in a new tab)

  3. Low Energy Order-To-Disorder Transition Pathways In Phase-Change Nanowires

    … phonon mode based amorphization mechanism in In2Se3 nanowires. Furthermore, we utilize TEM extensively to correlate the structural and electrical resistance changes in these nanowires, which reveal several interesting characteristics. The resistance switching mechanism in the superlattice …

    penn Repository record for Low Energy Order-To-Disorder Transition Pathways In Phase-Change Nanowires (opens in a new tab)

  4. Emergent functionalities in van der Waals ferroelectrics: photovoltaics, electromechanical coupling, and domain wall conductivity

    Submission original under an indefinite embargo labeled 'Open Access'. The submission was exported from vireo on 2025-10-20 without embargo terms

    uiuc Repository record for Emergent functionalities in van der Waals ferroelectrics: photovoltaics, electromechanical coupling, and domain wall conductivity (opens in a new tab)

  5. Atomic-scale studies of bending in two-dimensional materials using transmission electron microscopy

    Submission published under a 24 month embargo labeled 'U of I Access', the embargo will last until 2024-12-01

    uiuc Repository record for Atomic-scale studies of bending in two-dimensional materials using transmission electron microscopy (opens in a new tab)