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M

M. Morales-Luna

Researcher at University of Monterrey

Publications -  24
Citations -  538

M. Morales-Luna is an academic researcher from University of Monterrey. The author has contributed to research in topics: Thin film & X-ray photoelectron spectroscopy. The author has an hindex of 11, co-authored 21 publications receiving 344 citations. Previous affiliations of M. Morales-Luna include Monterrey Institute of Technology and Higher Education & UAM Azcapotzalco.

Papers
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The evolution of the Mo5+ oxidation state in the thermochromic effect of MoO3 thin films deposited by rf magnetron sputtering

TL;DR: In this article, the average luminous transmittance T ∗ lum was investigated as a function of the annealing temperature, T a, where the highest change was found in samples treated in argon, where T ∆ lum shifted from 71.69% at room temperature ( RT ) to 44.58% at 300 Â Â C.
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Ion Trapping and Detrapping in Amorphous Tungsten Oxide Thin Films Observed by Real-Time Electro-Optical Monitoring

TL;DR: In amorphous electrode materials, a detailed knowledge of Li-ion intercalation is hamper energy saving and storage as mentioned in this paper, which relies on ion exchange between electrodes and electrolytes.
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Enhanced photocatalytic activity of TiO2-ZnO thin films deposited by dc reactive magnetron sputtering

TL;DR: In this paper, the effect of deposition conditions on the photocatalytic activity of TiO 2 -ZnO thin films was studied by using a (Ti) 90 -(Zn) 10 alloy target, the samples were deposited at room temperature on glass substrates by dc reactive magnetron sputtering and post-annealed in air at 500°C.
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Enhanced photocatalytic activity of amorphous MoO3 thin films deposited by rf reactive magnetron sputtering

TL;DR: In this article, the photocatalytic activity of molybdenum trioxide (MoO3) thin films was studied and the dependence of the physical properties of the metal oxides on the sputtering power and working pressure was investigated.
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Optical, structural, and morphological properties of photocatalytic TiO2–ZnO thin films synthesized by the sol–gel process

TL;DR: In this paper, the surface morphology of the (TiO 2 ) 1−−−x −(ZnO) x thin films was analyzed using the Tauc model and it was determined that the band-gap energy increased from 3.43 eV to 3.60 eV.