Polymorphism in CuInS2 epilayers: Origin of additional Raman modes
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- Type
- article
- Published
- 2002-01-25
- Cited by
- 73
- References
- 17
- OpenAlex
- https://openalex.org/W1987852160
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:119496994
Keywords
Raman spectroscopy, Chalcopyrite, Phonon, Diffraction, Electron diffraction
References
- Ab initio calculation of phonon spectra
- CuAu-type ordering in epitaxial CuInS2 films
- Photoluminescence, infrared reflectivity, and Raman spectra of the ordered vacancy compound CuGa3Se5
- Micro-Raman spectroscopy in polycrystalline CuInSe2 formation
- First-principles calculation of the order-disorder transition in chalcopyrite semiconductors.
- Local-density-functional calculation of the pressure-induced metallization of BaSe and BaTe.
- Structure modifications in chalcopyrite semiconductors
- Zone‐centered phonons in AIBIIIS2 chalcopyrites
- Raman scattering structural evaluation of CuInS2 thin films
- 9.2% efficient CuInS2 mini-module
- Transmission electron microscopy investigation and first-principles calculation of the phase stability in epitaxial CuInS2 and CuGaSe2 films
- Defect physics of the CuInSe 2 chalcopyrite semiconductor
- Crystalline phases at the p‐ to n‐type transition in Cu‐ternary semiconducting films
- Structural and electronic properties of epitaxially grown CuInS2 films
- Microstructure and secondary phases in coevaporated CuInS2 films: Dependence on growth temperature and chemical composition
- Self-Consistent Equations Including Exchange and Correlation Effects
- Ground State of the Electron Gas by a Stochastic Method
- THE GROUND STATE OF THE ELECTRON GAS BY A STOCHASTIC METHOD
Cited by
- On the phase control of CuInS2 nanoparticles from Cu-/In-xanthates.
- Synthesis of zincblende CuInS2 and Fe-substituted CuInS2 by the reaction of binary colloids
- Materials design of n-type CuInS2 thin films with reduction of Cu–Au phase using Cd2+ ions
- Compositional dependence of Raman scattering and photoluminescence emission in CuxGaySe2 thin films
- Phonon confinement and strain in CuInS2
- Kesterites—a challenging material for solar cells
- Effects of sulfurization and Cu/In ratio on the performance of the CuInS2 solar cell
- Formation of p-type CuInS2 absorber layers via sulfurization of co-electrodeposited Cu–In precursors
- Selective etching of metastable phase induced an efficient CuIn0.7Ga0.3S2 nano-photocathode for solar water splitting
- Metastability of CuInS2 and its implications on thin-film growth
- In situ and ex situ characterisation of thermally induced crystallisation of CuInS2 thin films for solar cell
- Lattice dynamics of CuAu-orderedCuInSe2
- Growth of Cu-Rich/Poor CuInS 2 thin films by the sequential modulated flux deposition technique
- Ex situ structural characterization during the formation of CuInS2 thin films
- Crystal quality studies of CuInS2 films prepared by spray pyrolysis
- High-pressure Raman scattering study of defect chalcopyrite and defect stannite ZnGa2Se4
- Structure, morphology and optical properties of CuInS2 thin films prepared by modulated flux deposition
- The Influence of TiO2 Particle Size in TiO2/CuInS2 Nanocomposite Solar Cells
- Sulfurization of electrodeposited CuInSe2-based solar cells
- Optical, Structural and Electronic Properties of CuInS 2 Solar Cells Deposited by Reactive Magnetron Sputtering
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