Water-soluble nanogels functionalized with organic photocatalysts that boost standard disinfection formulations by producing reactive oxygen species and chlorine oxides under ordinary household visible light, enabling safer, long-lasting antimicrobial performance without UV exposure.
This technology introduces water-soluble ionic nanogels functionalized with organic photocatalysts that can be added to standard disinfection formulations. The nanogels harness visible light at household intensities to drive a novel photocatalytic scheme that generates reactive oxygen species (ROS) and oxidizes chlorine ions into chlorine oxides (ClOx). By replacing the high-energy UV light traditionally required for chlorine oxide production, the approach makes advanced disinfection chemistry accessible in everyday environments. The goal is to provide a long-lasting, light-activated antimicrobial effect that integrates seamlessly into existing aqueous cleaning and disinfection products.
The concept is at an early-to-mid stage of development. Theoretical work has confirmed that the energies accessible through the con-PET scheme match those used in ozone-based chlorine oxide production. Hydrogels have been synthesized under low-intensity visible light, and a photoredox autocatalysis strategy has been developed for diagnostic amplification. Next steps include selecting photocatalysts with confirmed con-PET potential, functionalizing PEG-based nanogels via continuous-flow chemistry, incorporating prototypes into aqueous base formulations, and conducting standardized antimicrobial testing with partners at the School of Medicine and the Microbiology Department at UANL. Iterative lab troubleshooting and partner feedback will guide refinement toward formulation-ready prototypes.
Tecnológico de Monterrey is a leading private, multi-campus research university in Mexico, recognized for entrepreneurship and industry collaboration. Its Monterrey headquarters anchors an urban innovation district with open lab space, prototyping, and shared testing facilities that welcome corporate collaborators. An integrated health system supports clinical research and translation, while structured internships and challenge-driven partnerships connect companies with faculty and student talent year-round. Research is supported by competitive federal funding through Mexico’s national science and technology council, along with industry contracts and international sponsors. A dedicated technology transfer office manages IP, licensing, and startup formation.