Avalanching nanoparticles that convert safe near-infrared light into UVC and blue light for surface disinfection. Designed for incorporation into aqueous solutions or embedded into materials, enabling effective antiviral and antimicrobial treatment of hard and porous surfaces at significantly reduced dosages.
Avalanching Nanoparticles (ANPs) are a novel class of nanomaterial that converts near-infrared (NIR) light into shorter-wavelength emissions, including UVC (200–280 nm) and blue light (450–470 nm). These wavelength ranges have been validated in prior studies as effective for viral inactivation and antimicrobial action, including limiting the replication of SARS-CoV-2. Because the ANPs emit disinfecting light locally when excited by a safe NIR source, the technology avoids the hazards associated with direct UVC exposure to skin and eyes, while also reducing material degradation. Potential applications include aqueous disinfection sprays for hard surfaces and textiles embedded with ANPs for soft surfaces such as personal protective equipment and clothing.
The ANP platform has been published in Nature and demonstrated as a functional nanomaterial class. Near-term validation work focuses on developing aqueous disinfection solutions for hard surfaces, textile-embedded ANPs for soft surfaces, and establishing the NIR dosage required for effective disinfection of porous materials. Parallel R&D efforts aim to further enhance upconversion efficiency. The technology is at an early-to-mid stage of development, with ongoing optimization and application-specific validation.
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