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Showing 1 to 5 of 5 for “"spatial atomic layer deposition"”.

  1. FUNCTIONAL THIN FILMS BY SPATIAL ATOMIC LAYER DEPOSITION FOR PHOTOVOLTAIC APPLICATIONS

    … and analysis of thin films deposited by spatial atomic layer deposition for application in the photovoltaic industry. The atomic layer deposition technique offers good uniformity, conformality and precise film thickness control. The spatial atomic layer deposition technique combines a …

    nus Repository record for FUNCTIONAL THIN FILMS BY SPATIAL ATOMIC LAYER DEPOSITION FOR PHOTOVOLTAIC APPLICATIONS (opens in a new tab)

  2. Ultraviolet-Assisted Atmospheric-Pressure Spatial Atomic Layer Depositions for Tuning ZnO Properties

    … development of UV-assisted Atmospheric Pressure Spatial Atomic Layer Deposition (UV-APSALD) as a technique for depositing ZnO films. A study of the current literature identifies the need for high-quality metal oxide thin films; metal oxides are near ubiquitous in modern day electronic …

    cambridge Repository record for Ultraviolet-Assisted Atmospheric-Pressure Spatial Atomic Layer Depositions for Tuning ZnO Properties (opens in a new tab)

  3. ingegnerizzazione di processi di deposizione chimica da fase vapore e da soluzione per materiali funzionali avanzati

    … deposizione chimica in fase vapore (MOCVD), la “spatial atomic layer deposition” (SALD) e la deposizione sol-gel. Le tecniche di deposizione in fase vapore, che offrono un controllo preciso sulla formazione di film sottili, contribuiscono allo sviluppo di film funzionali per la fabbricazione di …

    catania Repository record for ingegnerizzazione di processi di deposizione chimica da fase vapore e da soluzione per materiali funzionali avanzati (opens in a new tab)

  4. Vapour-based growth of inorganic compounds for next-generation, stable photovoltaics

    … In the literature section, chemical vapour deposition is identified as a versatile family of growth techniques through which a wide range of materials can be grown, and morphologies accessed. Of these, furnace based chemical vapour deposition holds the advantages of ease of set up and …

    cambridge Repository record for Vapour-based growth of inorganic compounds for next-generation, stable photovoltaics (opens in a new tab)

  5. Developing next generation, non-toxic, inorganic materials for photovoltaics and thin-film transistors

    … BiOI films grown by thermal chemical vapour deposition (CVD) incorporated into an all-inorganic ITO/NiO<sub>*x*</sub>/BiOI/ZnO/Al stack demonstrate high external quantum efficiencies (80% at 450 nm wavelength). However, the 1.9 eV band gap of BiOI is not matched to terrestrial solar spectra; …

    cambridge Repository record for Developing next generation, non-toxic, inorganic materials for photovoltaics and thin-film transistors (opens in a new tab)