ArwaGreen
R&D & Validation

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.

Validation

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.

Validation Partner

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.

Proposed Partner

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.

Reference Research

UNISA iNanoWS (South Africa)

Academic research basis referenced for ArwaGreen's nano water-safety application line, addressing in-storage biofilm formation.

ProductValidation ParameterValidating BodyStatus
Nano Gold (Grades A–D)Particle size, elemental purity (>99.9%)MNIT Jaipur MRCValidated
Nano Silver (Medical & Industrial)Particle size distribution, purityMNIT Jaipur MRCValidated
Nano Platinum & Palladium (PGM)Catalytic activity, elemental purityMNIT Jaipur MRCValidated
Nano CopperConductivity, particle sizeMNIT Jaipur MRCValidated
Graphene Nano PlateletsLayer count, conductivityIIT Gandhinagar CRTDH (proposed)In Progress
Green Hydrogen Nano-CatalystsElectrolysis efficiencyIIT Gandhinagar CRTDH (proposed)Planned
Quantum Dot MaterialsOptical/electronic propertiesIIT Gandhinagar CRTDH (proposed)Planned
Critical & Rare Earth NanomaterialsPurity, recovery efficiencyMNIT 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.

Green Technology

Our green process vs. conventional chemical nanoparticle production

ParameterConventional chemical routeArwaGreen green process
Reducing / capping agentsHazardous chemicals (e.g. sodium borohydride, hydrazine)Plant-based, chemical-free reduction
Hazardous effluentSignificant, requires treatment/disposalMinimal to none by design
Energy intensityOften high-temperature, solvent-reflux dependentLower-temperature, NO solvent route
Worker & community safetyRequires strict hazardous-chemical handling protocolsReduced chemical-handling risk profile
ScalabilityScale-up often multiplies hazardous-waste volumesDesigned for low-waste scale-up from inception
Import dependenceOften reliant on imported precursors/technology100% Indian process & manufacturing (Make in India)
Regulatory/ESG positioningIncreasing scrutiny under tightening green-chemistry normsPositioned ahead of tightening green-chemistry standards
End-of-life / circularityLimited circular-economy designLow-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.

Note — turning a debated by-product into a resource: Vinasse, the nutrient-rich residue left over from ethanol and biofuel distillation, has historically been treated as an environmental liability because of its high organic and mineral load when discharged untreated. Emerging nanotechnology-enabled valorisation research shows that vinasse can instead be processed into a nutrient-dense nano-fertilizer input — turning material once classified as a pollutant into a beneficial, non-hazardous agricultural resource. This mirrors ArwaGreen's own zero-waste, no-by-product philosophy, and we track this research closely as a candidate feedstock pathway for our Agriculture & Nano Fertilizer line.
Research Focus

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.

Facilities

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.

IP & Patents

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.

IN Patent 579531 44+ Products in filing roadmap
Phase 1 · Validate

MNIT/IITGN validation of core product lines.

Phase 2 · Pilot

Sector pilots in green hydrogen, petrochemical coatings, water safety and critical-mineral supply.

Phase 3 · Scale

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.