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Case Study · Construction

Stronger Concrete With Only 0.01% Graphene Oxide

0.01%

Graphene oxide

Loading
22–26%

Strength improvement

UCLA Concrete
26%

Higher Concrete Strength

PiMata Graphene Concrete
40%

Lower Porosity

PiMata Graphene Concrete
The challenge

Building Stronger Infrastructure with Less Material

Concrete is responsible for roughly 8% of global CO₂ emissions.

Our graphene oxide enhances concrete performance at ultra-low loading, delivering measurable improvements in strength and durability.

  • Higher compressive strength
  • Lower porosity
  • Improved durability
  • Potential cement reduction
  • Lower carbon footprint
CLIENT TO SUPPLY — study partners, methodology summary, test images, and any approved quotes.
Coverage

In the News

UCLA Samueli press release
UCLA Samueli Newsroom · Press release

UCLA Researchers Refine Use of Graphene Oxide for Stronger, More Durable Concrete

Read at samueli.ucla.edu ↗
Graphene-Info article
Graphene-Info

Graphene oxide boosts concrete strength with ultra-low loadings

Read at graphene-info.com ↗
Construction

Let’s Build Better Materials Together