Did you know that a significant portion of our strategic grain stock is lost every year due to mold that is invisible to the naked eye? We are changing that.
Explain how massive losses of stored cereals occur annually due to moisture and mold that are completely invisible to the naked eye. By the time the damage is visible, the economic impact is already devastating.
Explain our total mastery of DeepTech. We locally manufacture our sensors using the Spray Pyrolysis technique, utilizing nanostructured metal oxide thin films (specifically a highly sensitive p-NiO:Al / n-ZnO:Na heterojunction).
"P-Spray 2.0: Our custom machine for precision deposition."
Describe our intelligent early-warning IoT hardware. It relies on high-performance gas sensors capable of detecting putrefaction gases (CO2 or VOCs) at the very first stages, transmitting alerts via LoRaWAN.
Highlight our SaaS business model. Clients get a continuous cloud monitoring system provided as a subscription, allowing them to monitor silo health directly from their smartphones.
A multidisciplinary collective of researchers and engineers dedicated to securing the global food supply chain through nanotechnology.
CEO & DeepTech Visionary
Materials Physics Ph.D. with 7 years R&D experience. Translating nanotechnology into strategic food security.
CSO (Chief Scientific Officer)
Materials Physics Professor with 15+ years experience. Expert in nanostructured thin films.
CTO (Chief Technology Officer)
Specialist in advanced gas sensor design. Engineering the early putrefaction detection system.
Lead R&D Chemistry
Managing precursor chemical synthesis for reliable spray pyrolysis film deposition.
Nanomaterials Specialist
Optimization of the p-NiO:Al / n-ZnO:Na heterojunction for enhanced gas sensitivity.
Biophysics & Health Advisor
Expert on mycotoxins and fungal effects on food safety and public health.