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JORGE ANDRES GUERRA TORRES

JORGE ANDRES GUERRA TORRES

JORGE ANDRES GUERRA TORRES

Doctor en Física, PONTIFICIA UNIVERSIDAD CATOLICA DEL PERU

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Magíster en Física (PONTIFICIA UNIVERSIDAD CATOLICA DEL PERU)

DOCENTE ORDINARIO - PRINCIPAL
Docente a tiempo completo (DTC)
Departamento Académico de Ciencias - Sección Física

Publicaciones

Se encontraron 58 publicaciones

Ramos, J.; Zarria, J.; Canchanya, Y.; GUERRA, J. A.; Checca, N. R.; Castro, I. L.; Passamani, E.(2022). Raman, TEM, EELS, and Magnetic Studies of a Magnetically Reduced Graphene Oxide Nanohybrid Following Exposure to Daphnia magna Biomarkers. Nanomaterials. Volumen: 12.
GRIESELER, R.; Gallino, I.; Duboiskaya, N.; Döll, J.; Shekhawat, D.; Reiprich, J.; GUERRA, J. A.; Hopfeld, M.; Honig, H. L.; Schaaf, P.; Pezoldt, J.(2022). Silicon Carbide Formation in Reactive Silicon-Carbon Multilayers. Materials Science Forum. Volumen: 162. (pp. 44 - 48). Recuperado de: https://www.scientific.net/MSF.1062.44.pdf
QUIROZ, A. J.; Sato, R.; MASSONI, E. R.; SANCHEZ, E. R.; Bañuelos, J.; Sanchez, N.; GUERRA, J. A.; GRIESELER, R.(2021). Silver/palladium nanofilms for SERS application: Obtention and characterization. Materials Chemistry and Physics. Volumen: 273. Recuperado de: https://www.sciencedirect.com/science/article/pii/S0254058421008488?via%3Dihub
Canchanya, Y.; Mayta, A.; Pomalaya, J.; Bendezy, Y.; GUERRA, J. A.; RAMOS, J. A.(2021). Strain and grain size determination of CeO2 and TiO2 nanoparticles: Comparing integral breadth methods versus Rietveld, u;-Raman, and TEM. Nanomaterials. Recuperado de: https://www.mdpi.com/2079-4991/11/9/2311
DULANTO, J. A.; SEVILLANO, M. A.; GRIESELER, R.; GUERRA, J. A.; Korte, L.; Dittrich, T.; PALOMINO, J. A.(2021). Silicon interface passivation studied by modulated surface photovoltage spectroscopy. Journal of Physics: Conf. Series. Recuperado de: https://iopscience.iop.org/article/10.1088/1742-6596/1841/1/012003
Menzel, D.; TEJADA, A.; Al-Ashouri, A.; Levine, I.; GUERRA, J. A.; Rech, B.; Albrecht, S.; Korte, L.(2021). Revisiting the Determination of the Valence Band Maximum and Defect Formation in Halide Perovskites for Solar Cells: Insights from Highly Sensitive Near¿UV Photoemission Spectroscopy. Appl. Mater. Interfaces.
TEJADA, A.; Peters, S.; Al-Ashouri, A.; Turren-Cruz, S. H.; Abate, A.; Albrecht, S.; Rech, B.; GUERRA, J. A.; Korte, L.(2021). Hybrid perovskite degradation from an optical perspective: a spectroscopic ellipsometry study from the deep ultraviolet to the middle infrared. Advance optical materials. Volumen: 2101553. (pp. 2101553).
MEJIA, M. D. C.; SANCHEZ, L. F.; Kurniawan, M.; Eggert, L.; TEJADA, A.; CAMARGO, M. K.; GRIESELER, R.; RUMICHE, F. A.; DIAZ, M. I.; Bund, A.; GUERRA, J. A.(2021). Analysis of the physical and photoelectrochemical properties of c-Si(p)/a-SiC:H(p) photocathodes for solar water splitting. Journal of Physics D: Applied Physics. (pp. 195101). Recuperado de: https://iopscience.iop.org/article/10.1088/1361-6463/abdb69