Zobrazeno 1 - 10
of 273
pro vyhledávání: '"O. Zelaya-Ángel"'
Autor:
K.E. Nieto-Zepeda, A. Guillén-Cervantes, K. Rodríguez-Rosales, J. Santos-Cruz, D. Santos-Cruz, M. de la L. Olvera, O. Zelaya-Ángel, J. Santoyo-Salazar, L.A. Hernández-Hernández, G. Contreras-Puente, F. de Moure-Flores
Publikováno v:
Results in Physics, Vol 7, Iss , Pp 1971-1975 (2017)
Undoped and F-doped CdS thin films were grown on glass slides by chemical bath deposition using thiourea, cadmium acetate and ammonium fluoride as sulfur, cadmium, and fluorine sources, respectively. Undoped CdS films were deposited varying the conce
Externí odkaz:
https://doaj.org/article/c49a5d8fe94b4d2c851a5118046be1bb
Autor:
V.D. Moreno-Regino, F.M. Castañeda-de-la-Hoya, C.G. Torres-Castanedo, J. Márquez-Marín, R. Castanedo-Pérez, G. Torres-Delgado, O. Zelaya-Ángel
Publikováno v:
Results in Physics, Vol 13, Iss , Pp - (2019)
CdS thin films were deposited on commercial glass substrates by CBD technique at constant temperature and deposition time of 90 °C and 50 min, respectively. The reaction was performed by mixing cadmium acetate, ammonium acetate, ammonium hydroxide,
Externí odkaz:
https://doaj.org/article/181cbf538c4d477eaedbc99ecaaddbaa
Autor:
A. Méndez-López, O. Zelaya-Ángel, M. Toledano-Ayala, I. Torres-Pacheco, J.F. Pérez-Robles, Y.J. Acosta-Silva
Publikováno v:
Crystals, Vol 10, Iss 6, p 454 (2020)
Zirconium oxide (ZrO2) thin films were prepared by the sol-gel dip coating technique, in combination with annealing at different temperatures in air atmosphere, with the final goal of studying the water wettability of the surface. The annealing effec
Externí odkaz:
https://doaj.org/article/55751b14665f4ac496eccfbd5ee66ca4
Autor:
J. L. Fernández-Muñoz, M. Zapata-Torrez, A. Márquez-Herrera, F. Sánchez-Sinencio, J. G. Mendoza-Álvarez, M. Meléndez-Lira, O. Zelaya-Ángel
Publikováno v:
Scientifica, Vol 2016 (2016)
This paper focuses on the particle size distribution (PSD) changes during nixtamalized corn kernels (NCK) as a function of the steeping time (ST). The process to obtain powder or corn flour from NCK was as follows: (i) the NCK with different STs were
Externí odkaz:
https://doaj.org/article/6428c4729b9449eebeb7484ee86a413e
Autor:
E. Campos-González, S.A. Tomás, M. Becerril-Silva, A. Guillén-Cervantes, H. Silva-López, M. Meléndez-Lira, R. Lozada-Morales, J.L. Fernández-Muñoz, F. de Moure-Flores, J. G. Quiñones-Galván, A. Cruz-Orea, O. Zelaya-Ángel
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::fecd9432898cc1e7f74353279e6226a9
https://doi.org/10.2139/ssrn.4373037
https://doi.org/10.2139/ssrn.4373037
Autor:
J. Márquez Marín, G. Torres Delgado, M. A. Aguilar Frutis, R. Castanedo Pérez, O. Zelaya Ángel
Publikováno v:
International Journal of Photoenergy, Vol 2014 (2014)
An Au/Cu2Te/CdTe/CdS/TCO/glass heterostructure based superstrate solar cells with 2.5 mm2 of area, where the CdTe layer was prepared by means of closed spaced sublimation (CSS) and the CdS by chemical bath, reached an efficiency η value of 12.1%. As
Externí odkaz:
https://doaj.org/article/b91b5cfdf18b44a4800fdc751f183f26
Autor:
Gerardo Torres-Delgado, O. Zelaya Ángel, Rebeca Castanedo-Pérez, G. Martínez-Saucedo, Arturo Mendoza-Galván
Publikováno v:
Materials Science in Semiconductor Processing. 68:133-139
The transformation of cupric oxide (CuO) into cuprous oxide (Cu2O) thin films by rapid thermal annealing (RTA) treatments is studied. The CuO films were obtained by dip-coating from a precursor solution containing copper (II) acetate. The films are f
Publikováno v:
Environmental Science and Pollution Research. 23:13191-13199
The benzene pollutant in gaseous phase was successfully degraded by using ZnO + Zn2TiO4 multicomponent oxide thin films as photocatalysts. The films were obtained with different Ti/Zn ratios (0, 0.20, 0.40, 0.45, 0.50, 0.67, 0.84, and 1) by the sol-g
Publikováno v:
Journal of Photochemistry and Photobiology A: Chemistry. 310:52-59
In this work, TiO2 and CdO + CdTiO3 multicomponent oxide thin films growth was performed with different Ti/Cd ratios (0, 0.20, 0.49, 0.60, 0.65, 0.70 and 1) by the sol–gel route in order to degrade benzene in gas phase with an initial concentration
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