Hylomatrix End Applications
Performance Without Compromise.
Manufactured on a unified industrial platform. Engineered for record-level efficiency. Built on a 100% recyclable composite foundation.
Engineered for Circularity
Hylomatrix Composite™ is 100% recyclable. Recyclability of final products depends solely on the substrate selected.
- • No lithium
- • No cobalt
- • No rare earth elements
- • No heavy metals
- • No toxic binders
- • No hazardous waste
- • No water contamination
- • No environmentally harmful emissions
Production requires drastically less energy than conventional silicon or lithium-based systems — and facilities can operate in near electrical self-sufficiency.
Sustainability is embedded in the material physics.
2.1 Solid-State Energy Storage
Lithium-free. Bipolar. Fully solid-state.
Performance
- 450 Wh/kg gravimetric energy density
- Roadmap beyond 800 Wh/kg
- More than 100,000 cycles
- Hyperfast charging and discharging
- 1:1 power-to-energy ratio
- Fully chargeable and fully dischargeable
- Operating range: -30°C to 130°C
- Thermal stability without sophisticated cooling systems
- No dendrite formation
- No thermal runaway
- No fire. No explosion.
Structural Advantages
- No liquid electrolytes
- No gas formation
- Simple BMS architecture
- Reduced system weight
- Lower cabling requirements
- Lower degradation rates
- Reduced cooling infrastructure saves space, cost and weight
Flexible pouch-cell formats possible. Pouch cells up to 1.2 m². Large-format integration reduces connectors. Lower internal resistance.
Designed for best-in-class production economics and world record breaking $/cycle ratio.
2.2 Solar Energy Systems
Silicon-free. Ambient manufactured.
Performance
- 24.1% efficiency (25.7% in industrialization process)
- Optimized for low and diffuse light
- Outperforms conventional technologies under non-ideal conditions
- Up to 30% higher annual energy yield in extreme climates
- Minimal efficiency loss at high temperatures (~3% at 100°C)
- Significantly lower degradation over time
- Extended operational lifetime
- Sustained higher power output throughout lifecycle
- 30–50% lighter than conventional modules
- No bypass diodes required
Structural Advantages
- Flexible modules prevent microcrack formation
- Lower maintenance costs
- Reduced performance decay
- Fully recyclable Hylomatrix Composite™ layer
No wafer production. No high-temperature melting. No vacuum deposition. Highly competitive production costs.
2.3 Infrared Heating Systems
Radiative infrared heating architecture. Not surface heating. Infrared radiation — like the sun.
Performance
- 100% energy conversion
- Operating capability up to 600°C
- Homogeneous infrared radiation
- Rapid response
Structural Advantages
- Heats objects, not air
- Increased comfort
- Higher energy efficiency
- Healthier indoor climate (no air circulation movement)
- Flexible substrate compatibility
Recyclable composite layer.
2.4 Surface Lighting Systems
High-efficiency luminous architecture.
Performance
- >93% efficiency
- 50,000+ hours
- Flicker-free
- AC/DC compatible
- RGB / RGBW controllable
Structural Advantages
- Flexible light applications on fabric, PVC, PET and films
- Minimal heat generation
- Bendable substrates
- Recyclable composite structure
Surface becomes intelligent light.
2.5 Electrochromic Smart Coatings
Dynamic light and thermal modulation.
Functional Advantages
- Blocks infrared radiation
- Reduces climatization costs
- Improves building energy efficiency
- Printable on multiple substrates
- Transparent roadmap integration
Recyclable composite foundation.
Substrate Freedom
All Hylomatrix End Products™ can be applied to virtually any substrate:
- • Aluminium and metals
- • Porcelain and concrete
- • Glass
- • Plastics and films
- • Textiles
- • Wood
- • Composite panels
This substrate freedom enables entirely new product categories and market niches. Energy systems are no longer limited to conventional module formats. They become structural elements.
Integrated Product Architectures
Hylomatrix technology allows full system integration on a single substrate.
Smart Energy Tile
Printed on stone, concrete or porcelain. Integrated layers can include:
- Energy generation
- Energy storage
- Infrared heating
- Lighting
- Motion detection
Applications: Pedestrian areas, parking infrastructure, public spaces, industrial zones. Heavy-load resistant. Energy-producing surface infrastructure.
Ultra-Thin Integrated Solar Panel
Solar generation and battery storage integrated on the same substrate.
- Total thickness from approximately 15 mm
- Reduced cabling
- Reduced installation complexity
- Simplified energy architecture
Energy generation and accumulation become one structural element.