Engineering green at the nanoscale — and proving it independently
Every ArwaGreen research programme starts from one constraint: the process must be plant-based and chemical-free before it is judged on performance. Every purity claim is backed by an external validation partner.
MNIT Jaipur validation & product validation reports
Material characterisation is carried out independently, not self-certified. This is the credibility layer institutional buyers and investors ask for first.
MNIT Jaipur — Materials Research Centre
Independent elemental and particle-size characterisation (ICP-MS/ICP-OES-grade) for the core nano product portfolio, including Nano Gold, Nano Silver and precious-metal grades.
IIT Gandhinagar — CRTDH
DSIR-supported instrumentation access proposed under a formal Industry Research Partner collaboration, to expand validation across Graphene, Quantum Nano and hydrogen-catalyst product lines.
UNISA iNanoWS (South Africa)
Academic research basis referenced for ArwaGreen's nano water-safety application line, addressing in-storage biofilm formation.
| Product | Validation Parameter | Validating Body | Status |
|---|---|---|---|
| Nano Gold (Grades A–D) | Particle size, elemental purity (>99.9%) | MNIT Jaipur MRC | Validated |
| Nano Silver (Medical & Industrial) | Particle size distribution, purity | MNIT Jaipur MRC | Validated |
| Nano Platinum & Palladium (PGM) | Catalytic activity, elemental purity | MNIT Jaipur MRC | Validated |
| Nano Copper | Conductivity, particle size | MNIT Jaipur MRC | Validated |
| Graphene Nano Platelets | Layer count, conductivity | IIT Gandhinagar CRTDH (proposed) | In Progress |
| Green Hydrogen Nano-Catalysts | Electrolysis efficiency | IIT Gandhinagar CRTDH (proposed) | Planned |
| Quantum Dot Materials | Optical/electronic properties | IIT Gandhinagar CRTDH (proposed) | Planned |
| Critical & Rare Earth Nanomaterials | Purity, recovery efficiency | MNIT Jaipur MRC (proposed extension) | Planned |
Full validation certificates and characterisation reports (TEM/SEM imagery, ICP-MS/ICP-OES data) are shared under NDA to qualified buyers, research institutions and investors — request via our enquiry form.
Our green process vs. conventional chemical nanoparticle production
| Parameter | Conventional chemical route | ArwaGreen green process |
|---|---|---|
| Reducing / capping agents | Hazardous chemicals (e.g. sodium borohydride, hydrazine) | Plant-based, chemical-free reduction |
| Hazardous effluent | Significant, requires treatment/disposal | Minimal to none by design |
| Energy intensity | Often high-temperature, solvent-reflux dependent | Lower-temperature, NO solvent route |
| Worker & community safety | Requires strict hazardous-chemical handling protocols | Reduced chemical-handling risk profile |
| Scalability | Scale-up often multiplies hazardous-waste volumes | Designed for low-waste scale-up from inception |
| Import dependence | Often reliant on imported precursors/technology | 100% Indian process & manufacturing (Make in India) |
| Regulatory/ESG positioning | Increasing scrutiny under tightening green-chemistry norms | Positioned ahead of tightening green-chemistry standards |
| End-of-life / circularity | Limited circular-economy design | Low-waste, circular-economy-oriented process design |
Comparative framing based on standard chemical-route nanoparticle synthesis literature; ArwaGreen's green process is applied within the documented scope of each product line. Full methodology available on request.
Five active research programmes
Precious & Noble Metal Nanoparticles
Gold, Silver, Platinum, Palladium and PGM group synthesis and purification.
Green Conductive Materials
Graphene, carbon nanotubes, nano copper for batteries and electronics.
Energy & Hydrogen Nanocatalysts
Catalyst materials for green hydrogen electrolysers and fuel cells.
Critical & Rare Earth Recovery
Scandium, Yttrium, Lanthanum and related critical-mineral nanomaterials.
Quantum Nano & Materials Intelligence
Quantum dots, nano composites, and AI-assisted materials discovery.
Gandhinagar R&D Facility
Synthesis, characterisation and packaging labs for metallic, metal-oxide, polymer-based and carbon-based nanoparticles, supported by MNIT Jaipur MRC and (proposed) IIT Gandhinagar CRTDH, PARAM Ananta supercomputing, and Materials Electrochemistry facilities.
Owned technology, not licensed
Indian Patent 579531 — Green Hybrid Power Generator & Hydrogen Platform (sister technology vertical). Product-specific nano and quantum-nano patent filings are on the near-term roadmap as each product line moves from Pilot to Commercial grade.
MNIT/IITGN validation of core product lines.
Sector pilots in green hydrogen, petrochemical coatings, water safety and critical-mineral supply.
GIFT IFSC-based export scale-up and commercial licensing across 26 sectors.
Request our validation reports
MNIT Jaipur characterisation data, TEM/SEM imagery and process documentation — shared under NDA to qualified institutions.