Graphene
Graphene oxyde(GO)
Reduced graphene oxyde (rGO)
Turn waste into high-performance graphene — with zero emissions, zero chemicals, and industrial scalability.
We use carbon black, plastic waste, biomass, and even CO₂ gas — no graphite, no mining. → Cheaper. Scalable. Circular.
Water-split via electrolysis → HHO gas → superheated plasma (350–3500°C). No fossil fuels. Only byproduct: clean water vapor.
Direct writing of graphene, GO, rGO, and nanocomposites — no inks, no solvents. → Simultaneous synthesis & 3D printing.
| Feature | Traditional Methods | Laser (LIG) | Flash Joule | Nanoact (HHO Plasma) |
|---|---|---|---|---|
| Feedstock | Graphite (expensive) | Polymers only | Plastic waste | Any carbon waste |
| Chemicals Used | Acids, solvents (H₂SO₄, KMnO₄) | Minimal | None | Zero |
| Emissions | Toxic gases (SO₂, NOₓ) | CO₂ | CO₂ | Water vapor only |
| Scalability | Low | Medium | Medium | High (modular) |
| Energy Efficiency | 20–40% | 30% | 50% | ~80% |
| Production Speed | Hours/days | Minutes | Seconds | Seconds to minutes |
| Printing Integration | Separate step | Yes | No | Yes – 2D/3D direct write |
| GO/rGO Possible? | Yes (multi-step) | Limited | No | Yes – single step |
| Based on 1T production. NANOACTS eliminates 168,889L water, 48,000L H₂SO₄, 80T KMnO₄ per ton: DEEP GREEN GRAPHENS. | ||||
Intro with a picture at the bottom. Great for pro-coders for fast prototyping and small customers' projects.
Ultra-fast charging batteries, supercapacitors → GO enables 5x faster charge in Li-ion.
Graphene-enhanced concrete, asphalt → Stronger, longer-lasting, lower carbon footprint.
Flexible, printed sensors for IoT, healthcare → Direct-write plasma printing = no inks.
Lighter, stronger, conductive composites → 0.5% loading = 200% performance gain.
Nano-filters for heavy metals, pathogens → GO-MO composites remove Cd, Co, H₂S.
Antibacterial sensors, drug delivery → rGO-based hybrid sensors in development.
1 ton of waste → 0.85–0.95 ton of graphene
80% lower CAPEX vs. CVD/pyrolysis
Zero toxic waste — only water recycled
Potential to eliminate 1M+ tons of plastic/year
>The global water filter market will hit $24.27B by 2032. Graphene bio-market to grow at 30% CAGR. → Source: sphericalinsights.com
CIRCULAR AND SUSTAINABLE ECONOMY
Clean environment through technologies for converting non- degradable garbage into materials of the future
We’re searching for people who want to create work that matters — bold, original, and groundbreaking. Minds that stay sharp through challenges, or even seek them out without hesitation.
Our goal is to make a lasting imprint on the materials after tomorrow and the future industry. We want to walk alongside those who share that ambition.
Desktop to industrial scale
Sell tech to waste processors, chemical firms, cities
No cleanrooms, no toxic handling systems
"We're not just making better graphene —
we're redefining how it's made."
Synthesis, direct writing, and 3d printing graphene-like nanomaterials using brown’s gas plasma torch – 3 innovations