Información*
| Nombre | SAUL SANCHEZ VALDES |
|---|---|
| Área | BIOLOGÍA Y QUÍMICA |
| Campo | CIENCIAS TECNOLÓGICAS |
| Disciplina | FERTILIDAD |
| Especialidad | FUNCIONALIZACION |
| CVU | 7343 |
| Institución | |
|---|---|
| Dependencia | DIVISION DE TECNOLOGIA DE POLIMEROS |
| Entidad | COAHUILA DE ZARAGOZA |
| Nivel | 3 |
| Vigencia | Inicio: 01/01/2022 |
| Fin: 31/12/2026 |
* Información del primer trimestre de 2026.
Fuente: SECIHTI.
Publicaciones ORCID
- 2026
- Functionalization of Chitosan with Asparagus (Asparagus officinalis L.) Waste Extract as a Potential Additive for Active Food Packaging Application: Preparation and Characterization of Antioxidant and Antibacterial Properties Polysaccharides
- 2025
- Flame-Retardant Properties of a Styrene-Vinyl Tetrazole Copolymer Additive in an LDPE/EVA Blend Polymers
- Effect of Hollow Cellulose Fibers From Agro‐Industrial Waste on the Mechanical, Morphological, and Thermal Properties of Nylon‐6 Biocomposites Journal of Applied Polymer Science
- Synergistic effect between ammonium polyphosphate-functionalized poly(lactic acid) and phosphated avocado seed on the flame-retardant properties of poly(lactic acid)/ethylene–vinyl acetate copolymer composites Iranian Polymer Journal
- 2024
- Effect of Temperature and Initiator Concentration on the Curing Reaction of an Epoxy/Amine System ChemistrySelect
- Structural modification and encapsulation process of palygorskite for development of flame retardant additives: study of their thermal and mechanical properties in PLA/EVA blends Iranian Polymer Journal
- Short Glass Fiber Modifier Trisilanol–Isobutyl Polyhedral Silsesquioxane as Interfacial in Polypropylene Matrix: Effect of Flame Retardation and Mechanical Properties Polymers
- 2023
- A one-step process to produce high-crystallinity cellulose microfibrils from microwave irradiation of natural fiber waste Cellulose
- Study of the microwave-assisted hydrothermal extraction of polysaccharides from agave fiber: production of hollow cellulose fibers Cellulose
- Influence of ammonium polyphosphate‐modified polypropylene on flammability characteristics of polypropylene keratin and chitosan sustainable composites Fire and Materials