We really did find a puzzle piece to paradise. Intelligent Material can become part of countless systems designed to extend life, improve security, make transportation safer and smarter, protect the environment, and connect the physical world with useful information.

Most of these applications grow from the Intelligent Material crystal platform. Spectroscopy is deliberately different: it is a separate mid-infrared molecular-sensing platform developed with SRI and Princeton University.
Invisible material identities for currency, fibers, documents, brands and supply chains.
One materials platform spanning therapy, diagnostics and imaging.
Authentication, parts marking, covert identification, sensing and traceability across materials, munitions and systems.
Machine-readable roadways for positioning, bus alignment, GPS calibration and pedestrian guidance.
A separate mid-infrared platform using QCL / ICL lasers and infrared detectors to identify molecular absorption signatures.
Custom crystal systems for optical computing, storage, quantum interfaces, interferometers, resonators and photonic devices.
Three distinct energy applications built around converting light, driving chemistry, and reading what happens underground.
Diagnose plant disease, measure fields and emissions, and engineer films and optical systems that manage light, water and crop information.
Connector intelligence, physical-layer security, component identity, monitoring and future wavelength-management materials for fiber networks.
Science kits, museum exhibits, STEM outreach and custom learning systems built around real crystals, light and measurement tools.
Trackless cars, passive-material laser tag and interactive trading cards built around optical information encoded directly into the product.
Wavelength conversion, spectral engineering, IR/NIR illumination, deep curing, therapeutic light and responsive optical surfaces.
Two complementary display programs: true volumetric emissive media and Intelligent Material layers for color conversion, contrast, waveguides, MicroLED, OLED, projection and AR/VR.
Deep-curing materials, localized photochemistry, optical diagnostics and smarter restorative systems.
Optical skin analysis, NIR-triggered local light conversion, spectrally tuned beauty devices, smart mirrors, films and light-activated formulations.
Mid-infrared molecular sensing for greenhouse gases, industrial emissions, air quality, water processes and distributed field monitoring.
Choose an application above, or tell us the physical problem you are trying to solve.
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