My research addresses the low sensitivity of NMR spectroscopy by designing novel analytical protocols for challenges in chemistry. My research is concerned with enhancing the NMR signal intensity for the study of intermolecular interactions of metal complexes with biomolecules (proteins, enzymes and nucleic acids) and for the analysis of complex matrices such as biopolymers and living organisms. I use high-field/low-field NMR, time-domain NMR relaxometry, MRI, and solid-state NMR to acquire quantitative and qualitative data that map complex molecular systems. Distinguished RENACYT Research.
2025 - 2028
UNVEILING THE RHEOLOGY OF CROSSLINKED XANTHAN GUM IN SOLUTION THROUGH HIGH-RESOLUTION AND TIME-DOMAIN NMR SPECTROSCOPY
2025 - 2027
VALORIZACIÓN DE RELAVES POLIMETÁLICOS PARA LA PRODUCCIÓN DE MATERIALES CEMENTÍCIOS Y GEOPOLIMÉRICOS APLICABLES EN INFRAESTRUCTURA MINERA BAJO UN MODELO DE ECONOMIA CIRCULAR
2025 - 2026
STEADY STATE FREE PRECESSION RELAXATION MAPPING WITH DEEP LEARNING IN HIGH-RESOLUTION NMR
1QUI01 - QUÍMICA 1
Semestre 2026
QUI212 - ANÁLISIS INSTRUMENTAL
Semestre 2025
Semestre 2024
QUI308 - QUÍMICA ANALÍTICA ORGÁNICA
Semestre 2026
QUI357 - ESPECTROSCOPÍA MOLECULAR
Semestre 2025
1ICM14 - TRABAJO DE TESIS 1
Semestre 2026
ESG601 - TALLER ESPECIAL DE INVESTIGACIÓN
Semestre 2026
Semestre 2025
QUI744 - ESPECTROSCOPÍA MOLECULAR
Semestre 2026
QUI760 - CURSO MODULAR DE TEMAS SELECTOS 4
Semestre 2025
QUI767 - MÉTODOS ESTADÍSTICOS PARA QUÍMICA ANALÍTICA
Semestre 2026