- 04 / Lab

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.

- Process video

Inside the lab. From seam to spec.

Process video - coming soon
- Conductivity · ITI Sri Lanka, 2024

The highest of all samples tested, against the world’s leading manufacturers.

SampleResistance (Ω)Resistivity (ρ)Conductivity (S/m)
Graphenera CG0.042263.781 × 10⁻⁰⁴2644.5
Sample B0.048194.312 × 10⁻⁰⁴2319.1
Sample C0.054424.869 × 10⁻⁰⁴2053.6
Sample D0.043963.933 × 10⁻⁰⁴2542.3
Sample E0.057255.123 × 10⁻⁰⁴1952.1
Sample F0.054644.889 × 10⁻⁰⁴2045.4
Sample G0.054964.918 × 10⁻⁰⁴2033.4

Report No. CTS 2412796 · Industrial Technology Institute, Sri Lanka · 2024

- Concrete strength · Australia

29% stronger. On the 28th day.

- Day 7
0%

Compressive strength uplift over the control mix at 7 days.

- Day 28
0%

Compressive strength uplift at full cure. Equivalent to a major change in mix design.

- Mechanism

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.

- Verification methods

Available on request.

XRD spectra

Graphite, GO, rGO at 250°C, 600°C, and 1000°C reduction temperatures.

Raman spectroscopy

Confirmation of exfoliation degree and structural defect characterisation.

SEM imaging

High-resolution scanning electron microscopy of source and processed material.

FTIR analysis

Functional group identification across our full product range.

Conductivity analysis

Four-probe electrical conductivity measurement to international standards.

TEM imaging

Transmission electron microscopy at the atomic scale for layer and defect verification.

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