SNII Área II ELECTROQUÍMICA 164 MENDOZA HUIZAR, LUIS HUMBERTO
MENDOZA HUIZAR, LUIS HUMBERTO

MENDOZA HUIZAR, LUIS HUMBERTO

QUÍMICA · Nivel 3

electrochemistry molecular design nanoparticles molecular docking molecular dynamics

Desde 2002 es Profesor-Investigador en Universidad Autónoma del Estado de Hidalgo

Perfil académico

Nombre LUIS HUMBERTO MENDOZA HUIZAR
Área BIOLOGÍA Y QUÍMICA
Campo QUÍMICA
Disciplina ELECTROQUÍMICA
Especialidad FISICOQUIMICA
CVU 30273
Institución
Dependencia INSTITUTO DE CIENCIAS BASICAS E INGENIERIA
Entidad HIDALGO
Nivel 3
Vigencia Inicio: 01/01/2023
Fin: 31/12/2027

Publicaciones ORCID

2026
Electrochemical Kinetics and Morphological Study of Iron Electrodeposition on a Glassy Carbon Electrode from an Ammonium Chloride-Based Electrolyte Applied Sciences
Electrochemical Kinetic Study of Cobalt Electrodeposition onto Polycrystalline Silver from a Sodium Sulfate Electrolyte Applied Sciences
Smart Ear-Mounted Heart Rate Monitoring Device as a Proof-of-Concept Platform for Calving Monitoring in Dairy Cows Inventions
Timing Accuracy and Jitter Characterization of ESP32-Based Phase-Angle AC Control: MicroPython vs. Native C Electronics
Synthesis of Potassium Jarosite Solid Solutions: Characterization and Evaluation of Their Potential Electrical Properties Materials
Development of a voltammetric methodology based on a carbon paste electrode modified with CuO nanoparticles for the indirect determination of Aflatoxin B1 in food samples
Reactivity and Intramolecular Interactions in Linalool: A Computational Study Using Reactivity Descriptors, NCI, NBO, and QTAIM Analyses Croatica Chemica Acta
2025
Estudio computacional de las interacciones entre alérgenos de fragancia con los receptores olfativos OR1A1, OR5AN1 y el receptor de histamina H2 Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI
Estudio electroquímico de los procesos redox del paracetamol empleando ultramicroelectrodos de fibra de carbono Pädi Boletín Científico de Ciencias Básicas e Ingenierías del ICBI
Synthesis and characterization of core–shell nanoparticles (Fe3O4@TEOS) biofunctionalized with allicin from Allium sativum optimized by a Box–Behnken design Chemical Papers