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AbstractAbstract
[en] In this work, thin films of the LaSrCoO (0.05 < x < 0.26) compound were grown, employing the so-called spray-pyrolysis process. The as-grown thin films exhibit polycrystalline microstructure, with uniform grain size distribution, and observable porosity. Regarding their electrical transport properties, the produced thin films show semiconducting-like behavior, regardless the Sr doping level, which is most likely due to both the oxygen deficiencies and the grainy nature of the films. Furthermore, room-temperature current–voltage (I-V) measurements reveal stable resistance switching behavior, which is well explained in terms of space-charge limited conduction mechanism. The presented experimental results provide essential evidence regarding the engagement of low-cost, industrial-scale methods of growing perovskite transition metal–oxide thin films, for potential applications in random access memory devices.
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Source
Available from: http://dx.doi.org/10.1007/s00339-019-3263-8; AID: 80
Record Type
Journal Article
Journal
Applied Physics. A, Materials Science and Processing; ISSN 0947-8396;
; CODEN APAMFC; v. 126(1); p. 1-11

Country of publication
BINDING ENERGY, COBALT OXIDES, ELECTRIC CONDUCTIVITY, ELECTRON SPECTRA, EMISSION SPECTRA, GRAIN SIZE, LANTHANUM OXIDES, PARTICLE SIZE, PHOTOELECTRIC EMISSION, POLYCRYSTALS, POROSITY, PYROLYSIS, RAMAN SPECTRA, SCANNING ELECTRON MICROSCOPY, SPACE GROUPS, SPRAY COATING, STRONTIUM OXIDES, TEMPERATURE RANGE 0273-0400 K, THIN FILMS, X-RAY DIFFRACTION
ALKALINE EARTH METAL COMPOUNDS, CHALCOGENIDES, CHEMICAL REACTIONS, COBALT COMPOUNDS, COHERENT SCATTERING, CRYSTALS, DECOMPOSITION, DEPOSITION, DIFFRACTION, ELECTRICAL PROPERTIES, ELECTRON EMISSION, ELECTRON MICROSCOPY, EMISSION, ENERGY, FILMS, LANTHANUM COMPOUNDS, MICROSCOPY, MICROSTRUCTURE, OXIDES, OXYGEN COMPOUNDS, PHOTOELECTRIC EFFECT, PHYSICAL PROPERTIES, RARE EARTH COMPOUNDS, SCATTERING, SIZE, SPECTRA, STRONTIUM COMPOUNDS, SURFACE COATING, SYMMETRY GROUPS, TEMPERATURE RANGE, THERMOCHEMICAL PROCESSES, TRANSITION ELEMENT COMPOUNDS
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