Graphene and nano-ceramic coating technology for fire safety, heat dissipation and industrial energy efficiency.
Since its founding in 2021, GinnoLab has been setting a new benchmark for industrial safety in Korea with nano-ceramic inorganic coating technology.
3 registered patents and 1 pending application.
Collaboration with national energy & ceramic research institutes.
PoC programs underway with major global corporations.
Advised by a former CEO of Samsung Electronics.
The limitations of conventional organic synthetic-resin coatings are putting industrial sites at risk.
Organic coatings are weak against heat, accelerating fire spread in logistics centers, ESS facilities, and battery systems.
In a fire, organic coatings release toxic gases that are fatal to humans, increasing casualties.
VOC emissions cause pollution and make it difficult to comply with tightening ESG regulations.
A recording of heat being applied to a coated sample.
The footage alone does not establish a fire classification or service temperature.
Related literature: a review of inorganic intumescent coatings, distinct from product-specific mechanisms and classifications. [3]
A graphene + nano-ceramic matrix structure secures every advantage — fire resistance, heat dissipation, corrosion resistance, and sustainability.
Substrate, coating, process and environment.
Start with the conditions that matter.
A concise guide to the components and design considerations of composite coatings.
Heat transfer in a composite depends on its fillers and interfaces. [1] Surface heat dissipation requires considering emissivity, temperature and convection together. [2]
These external publications explain general scientific principles. They do not replace GinnoLab product-specific performance evidence, test reports or certifications.
Li, A.; Zhang, C.; Zhang, Y.-F. · 2017 · Polymers 9(9), 437
Thermal Conductivity of Graphene-Polymer Composites: Mechanisms, Properties, and ApplicationsA review of filler dispersion, orientation, loading and interfaces in heat transfer. It concerns polymer composites and does not directly validate GinnoLab’s inorganic formulations.
Tsai, W.-Y. et al. · 2017 · Materials 10, 454
High Thermal Dissipation of Al Heat Sink When Inserting Ceramic Powders by Ultrasonic Mechanical Coating and ArmoringAn experimental study of radiation and convection from ceramic-treated aluminum. Its ultrasonic mechanical coating process and test conditions differ; reported temperature reductions are not GinnoLab performance values.
Fu, A. et al. · 2025 · Progress in Organic Coatings 199, 108939
Intumescent coatings: Comprehensive advances with a focus on inorganic-dominant systemsA review of inorganic-dominant intumescent coating chemistry and mechanisms, assessed here from its public abstract. It does not establish GinnoLab’s expansion mechanism or non-combustibility classification.
Customized coating solutions tailored to the diverse needs of our customers.
Blocks flame and heat above 1,000℃ with zero toxic gas in a fire. Outstanding durability provides a near-permanent fire-protection zone effect.
21% better performance than conventional heat sinks, with thermal conductivity above 4 W/mK and emissivity above 0.85 — optimized for electronics thermal management.
Thermal coating application guide · Fire-safety coating application guide
Proven to deliver industry-leading performance through PoC programs with major corporations.
Temperature reduction vs. an uncoated heat sink, measured in a major-enterprise PoC.
Enter your server-room area, cooling load, and electricity rate to see the annual energy savings and payback period.
Universities, research institutes and investors behind our R&D and growth.






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