Brutalist concrete monolith
GRAPHENE TECHNOLOGY × PRODUCTION

Graphene integration, engineered for production.

GraphenCo integrates graphene technologies into industrial materials — combining domain expertise, AI-assisted formulation, and production-ready equipment to move from hypothesis to pilot and scale.

Turn targets into production-ready formulations
Use AI to reduce iteration cycles and risk
Validate with repeatable tests and QC checkpoints
Ship a pilot plan that fits your line constraints
Graphene ×
Co as collaboration
Cooperation
Co as materials
Concrete
Coating
Composite
“Co” is not a slogan — it’s how we work (together) and where we apply graphene (materials).
Use the AI chat for quick questions about formulation routes, compatibility, and validation plans.
Pilot-first · KPI-driven · 24–48h reply
Ecosystem
01
The integration triad
Mission
From lab to production
01 · AI engine
Finds candidate formulation routes and narrows iteration cycles before physical testing.
AI
02 · Material routes
Graphene types, loadings, dispersions, and compatibility guidance for your domain.
M
03 · Equipment + QA
Production-oriented validation, monitoring, and checkpoints that keep scale predictable.
EQ
Mode
Pilot
Output
Spec
What you get
Clear performance targets and pass/fail criteria
Formulation and process window that fits your line
Pilot-ready test plan and validation workflow
Path to scale: supply, repeatability, QA
See solutions
Market reality
Most material ideas fail at scale.
The bottleneck is not discovery — it’s integration. Results that look promising in the lab often break under production constraints, fragmented vendors, and high pilot risk.
How GraphenCo removes the bottleneck
Single workflow: targets → tests → pilot → scale
AI-assisted iteration to reduce time and risk
Compatibility-first: your line, your constraints
QC checkpoints and documentation for operations
Where is the value?
Pick your domain. See the outcome.
You should be able to explain the benefit internally in one sentence. Our job is to make graphene integration practical: measurable improvements, repeatable manufacturing, and a clear pilot plan.
Typical decision criteria
Spec-ready properties + QC checkpoints
Compatibility with your line & constraints
Repeatability across batches
Documented path from pilot to scale
Proof of concept (step one)
Concrete integration — live implementation
Our current concrete track is implemented at concretegraphene.com. This is the first step of graphene integration before we expand to other industries.
Benchmark
+35%
Compressive strength
Benchmark
−50%
Cement reduction
Benchmark
4–6 mo
Pilot timeline
Benchmarks reflect our concrete case framing and are used to set pilot targets and acceptance criteria.
Find your use-case
Tap to preview, click to pin.
Graphene concrete texture
For concrete producers (precast & ready-mix teams) starting graphene integration
Concrete is step one: graphene integration for strength + cost
Business outcomes
Concrete track benchmarks: +35% compressive strength, −50% cement (pilot targets)
Prove value fast with measurable KPIs and acceptance criteria
Optimize cement and additives without breaking batching/curing
Scale with repeatable QC checkpoints and low reject risk
What we deliver
AI-assisted formulation + dispersion strategy and dosage window
Test matrix with pass/fail criteria aligned to your spec
Pilot run plan + QA checkpoints for repeatable production
More examples
Fast navigation
Graphene-enhanced concrete texture
Construction
Graphene-enhanced concrete
Additives and mixes designed for real batching, curing, and field conditions.
Focus: compressive/flexural strength, durability, crack resistance.
Barrier coating visualization
Protection
Barrier & anti-corrosion coatings
Formulations that improve permeability, wear resistance, and service life.
Focus: salt fog, abrasion, chemical resistance.
Graphene network visualization
Conductivity
Conductive composites / EMI shielding
Polymer composites tuned for conductivity without breaking processing constraints.
Focus: surface resistivity, stability, manufacturability.
Conductive material visualization
Thermal
Thermal management materials
Paths to better heat dissipation in composites, pastes, and interfaces.
Focus: thermal conductivity, stability, repeatable mixing.
Fast navigation
Jump to the section you need or use the domain selector above.
Starting with concrete?
Concrete is our first integration track. Share your target property and constraints — we reply with a pilot outline and test plan.
Need something else?
We also work with composites, coatings, and materials where the key constraint is not “can it work?” but “can we produce it reliably?”.
Describe your application
A process built for decision-makers.
You get a structured path from hypothesis to pilot — with documentation, criteria, and clear go/no-go milestones.
Step 01
Scope + success criteria
Define target properties, constraints (cost, safety, processing), and acceptance tests.
01
Step 02
Formulation + dispersion strategy
Choose graphene type, loading range, mixing approach, and compatible binders/additives.
02
Step 03
Testing + iteration
Run validation against the criteria, iterate based on measurable deltas, document results.
03
Step 04
Pilot + scale path
Prepare a pilot plan, QA checkpoints, and a scale-up path that makes procurement and operations comfortable.
04
Ready to discuss your application?
Send a short description: material/system, constraints, and what needs to improve. We’ll reply with a proposed scope and a first-step plan.
NDA-friendly. B2B-first. Clear milestones.
Contact
Email
info@concretegraphene.com
Telegram
@graphenco
Current project
We are actively implementing graphene integration in concrete — our first step before expanding to other industries.