The proof, on paper.
Continuous in-house characterisation backed by independent third-party verification. Every batch is interrogated by complementary techniques before it leaves the facility.
Inside the lab. From seam to spec.
The highest of all samples tested, against the world’s leading manufacturers.
| Sample | Resistance (Ω) | Resistivity (ρ) | Conductivity (S/m) |
|---|---|---|---|
| →Graphenera CG | 0.04226 | 3.781 × 10⁻⁰⁴ | 2644.5 |
| Sample B | 0.04819 | 4.312 × 10⁻⁰⁴ | 2319.1 |
| Sample C | 0.05442 | 4.869 × 10⁻⁰⁴ | 2053.6 |
| Sample D | 0.04396 | 3.933 × 10⁻⁰⁴ | 2542.3 |
| Sample E | 0.05725 | 5.123 × 10⁻⁰⁴ | 1952.1 |
| Sample F | 0.05464 | 4.889 × 10⁻⁰⁴ | 2045.4 |
| Sample G | 0.05496 | 4.918 × 10⁻⁰⁴ | 2033.4 |
Report No. CTS 2412796 · Industrial Technology Institute, Sri Lanka · 2024
29% stronger. On the 28th day.
Compressive strength uplift over the control mix at 7 days.
Compressive strength uplift at full cure. Equivalent to a major change in mix design.
Crack arrest, improved hydration through water affinity, and reduction of capillary pores. The graphene oxide acts as a microscopic reinforcement scaffold within the cement matrix.
Tested at a reputed concrete strength facility, Australia. Documentation available on request.
Available on request.
Graphite, GO, rGO at 250°C, 600°C, and 1000°C reduction temperatures.
Confirmation of exfoliation degree and structural defect characterisation.
High-resolution scanning electron microscopy of source and processed material.
Functional group identification across our full product range.
Four-probe electrical conductivity measurement to international standards.
Transmission electron microscopy at the atomic scale for layer and defect verification.