
Thermal Barrier Coating
Substrate: Metal roofs, tanks, switchgear cabinets
Stops solar heat before it reaches the substrate

A water-based rare-earth coating system that blocks infrared and UV heat before it reaches the structure.
Derived from stealth-jet rare-earth wave-absorbing technology, engineered for extreme climates — lowering surface heat on buildings, industrial assets, and vehicles across Qatar.
Qatar faces some of the world’s highest cooling demand. Cutting the building envelope’s heat load is the most direct way to ease peak grid pressure and reduce air-conditioning cost.
Air conditioning share of Qatar’s summer peak electricity demand
Summer design temperatures driving cooling loads across the Gulf
Projected rise in regional cooling demand by 2030
Qatar’s 2021 national peak electricity demand — growing 4–5% a year
Five product lines cover metal, roof, glass, automotive, and OEM powder applications.

Substrate: Metal roofs, tanks, switchgear cabinets
Stops solar heat before it reaches the substrate

Substrate: Building roofs, skylight glazing
Zero-power cooling · 92% solar reflectance

Substrate: Commercial curtain walls, skylights
96%+ IR block · 1.7–2.9 year payback

Substrate: Windshields, side glass, sunroofs
99% UV block · 5G-signal friendly

Substrate: Coating manufacturers (OEM)
Solar reflectance 97%+
Infrared rejection
Surface cooling
Cooling energy cut
Glass coating payback
CO₂ avoided / 1000 m² / yr
Reference projects from high-temperature, high-irradiance climates — closely comparable to Qatar’s conditions.

Visible light 68.1% · UV block 97.9%. Summer heat gain cut, winter heat retained.
Source: Project test report

31°C drop under identical sun load; AC power reduced by 60% with hybrid cooling.
Source: Field monitoring

Jul–Oct electricity down year-on-year on under 1,000 m² of roof; estimated payback about 2.5 years.
Source: Utility bills 2024 vs 2025
We are selecting Doha-area roofs and tanks for monitored pilots. Site data will be published here.
Join the reference programPer 1,000 m² of roof area (planning estimates from product materials).
| Cost line | Conventional paint | EASYTO rare-earth coating |
|---|---|---|
| Initial cost (1,000 m²) | USD 3,300–6,900 | USD 8,000–12,000 |
| Repaints in 5 years | 1 time | 0 times |
| 5-year paint labor+material | USD 6,600–13,800 | USD 8,000–12,000 |
| 5-year energy savings | USD 0 | USD 5,400–8,100 |
| 5-year net cost after energy savings | USD 6,600–13,800 | USD 0–6,600 |
Conclusion — Over five years, net cost matches or beats conventional paint — while keeping surfaces cooler every day in between. In the best case, five-year energy savings fully offset the upfront premium.
Traditional LOW-E relies on metal-layer reflection. EASYTO uses rare-earth 4F electron-shell LSPR to absorb and convert near-infrared and UV across the spectrum.
| Comparison | Traditional LOW-E / ordinary paint | EASYTO rare-earth |
|---|---|---|
| Working principle | Metal coating reflection | 4F electron-layer LSPR absorb-convert |
| Light pollution | Yes | None |
| Signal shielding | Yes | None |
| Durability | Offline LOW-E ages quickly | 5–10 year weathering resistance |
| VOC | Often >100 g/L | 27.5 g/L |
| Infrared rejection | 40–50% | 95%+ |
Certifications and test results used for project submittals and GSAS credit support.
CTC (China National Testing Center) reports available for project submission packages.
Contractor network coordination for Qatar sites.
Applicator training with documented QA checkpoints.
5–10 year weathering performance · 10 year automotive film options.
Fast answers for site questions during works.
Eurasian Commodities Trading — Gharrafat Al Rayyan office.
Weathering performance is rated at 5–10 years depending on system and substrate, with 600+ hours of salt-spray testing and UV-stable rare-earth chemistry. Automotive films carry up to 10-year warranty options.
Tell us your substrate and project scale — we will return a coating system, coverage estimate, and payback outline.