SNII Área I ÓPTICA 470 MORALES SAAVEDRA, OMAR GUILLERMO
MORALES SAAVEDRA, OMAR GUILLERMO

MORALES SAAVEDRA, OMAR GUILLERMO

FÍSICA · Nivel 2

Desde 2003 es PROFESSOR en UNIVERSIDAD NACIONAL AUTONOMA DE MEXICO / UNAM

Perfil académico

Nombre OMAR GUILLERMO MORALES SAAVEDRA
Área FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA
Campo FÍSICA
Disciplina ÓPTICA
Especialidad PROPIEDADES OPTICAS DE LOS SOLIDOS
CVU 122871
Institución
Dependencia COORDINACION DE LA INVESTIGACION CIENTIFICA
Entidad CIUDAD DE MEXICO
Nivel 2
Vigencia Inicio: 01/01/2026
Fin: 31/12/2030

Publicaciones ORCID

2025
Disolución de un tejido orgánico con diferentes agentes oxidantes en un estudio comparativo del NaClO, ClO₂ y H₂O₂ Revista Tendencias en Docencia e Investigación en Química
2023
Synthesis–dependent structural and optoelectronic properties of semicrystalline LiNbO:SiO hybrid silicates Optical Materials
2017
Bis(4-nitroanilines) in interactions through a π-conjugated bridge: Conformational effects and potential molecular switches New Journal of Chemistry
2016
Enhanced NLO properties of molybdenum push-pull coordination compounds with tridentate ONO organic ligands Inorganica Chimica Acta
2015
Fabrication and optical testing of hybrid SiO2: Azo-polymer based planar waveguides for NLO/SHG laser emission Journal of Physics: Conference Series
Fabrication and photophysical studies of CdTe quantum-dots dispersed in SiO2sonogel optical-glasses Journal of Applied Research and Technology
Synthesis and overall photophysical characterization of SiO2:(Ag/SiO2) nanostructured sonogel hybrid glasses International Journal of Nanoscience
2014
Preparation, structural and NLO-optical characterization of LB-molecular films from asymmetric Bent-Core liquid crystals
Synthesis, X-ray diffraction analysis and nonlinear optical properties of hexacoordinated organotin compounds derived from Schiff bases Journal of Organometallic Chemistry
Thermomechanical and photophysical properties of crystal-violet-dye/H 2O based dissolutions via the pulsed laser photoacoustic technique Advances in Materials Science and Engineering