GRAPHENE × NANO-CERAMIC

Innovation through
Graphene.

Graphene and nano-ceramic coating technology for fire safety, heat dissipation and industrial energy efficiency.

1,000℃+
Flame / heat blocking temperature
21%
Heat dissipation improvement
100%
Inorganic & eco-friendly
2021
Steady growth since founding
About Us

A New Standard for Safety and Efficiency

Since its founding in 2021, GinnoLab has been setting a new benchmark for industrial safety in Korea with nano-ceramic inorganic coating technology.

Patented Technology

3 registered patents and 1 pending application.

Research Partnerships

Collaboration with national energy & ceramic research institutes.

Enterprise Validation

PoC programs underway with major global corporations.

Expert Advisory

Advised by a former CEO of Samsung Electronics.

Company Profile

Company
GinnoLab Co., Ltd.
CEO
Yoon Jinho
Founded
2021
Business Reg. No.
337-86-02146
Headquarters
Room 203, 22 Sicheong-ro, Wonju-si, Gangwon-do, Republic of Korea
Core Business
Nano-ceramic inorganic coatings (non-combustible & heat-dissipating)
The Problem

Why Inorganic Coatings Matter

The limitations of conventional organic synthetic-resin coatings are putting industrial sites at risk.

Fire Vulnerability

Organic coatings are weak against heat, accelerating fire spread in logistics centers, ESS facilities, and battery systems.

223,997Building & fire incidents per year

Toxic Gas Emission

In a fire, organic coatings release toxic gases that are fatal to humans, increasing casualties.

₩1.05TAnnual damage scale

Environmental Harm

VOC emissions cause pollution and make it difficult to comply with tightening ESG regulations.

2025Global ESG regulation in full force
Archived sample heating footage · product, test conditions and classification require separate verification.
Test footage

A physical sample.
A recorded test.

A recording of heat being applied to a coated sample.
The footage alone does not establish a fire classification or service temperature.

Fire-safety application guide

Related literature: a review of inorganic intumescent coatings, distinct from product-specific mechanisms and classifications. [3]

Technology

GinnoLab Nano-Ceramic Inorganic Coating

A graphene + nano-ceramic matrix structure secures every advantage — fire resistance, heat dissipation, corrosion resistance, and sustainability.

Material to application

Different surfaces.
Specific requirements.

Substrate, coating, process and environment.
Start with the conditions that matter.

Explore the application guide

Non-Combustible

Complete flame/heat block above 1,000℃

Heat Dissipation

Thermal management through heat transfer and radiation

Corrosion Resistant

Waterproof performance via nano-ceramic tech

Eco-Friendly

Zero VOC / heavy metals, fully inorganic
Material principles

Understanding the role
of each material.

A concise guide to the components and design considerations of composite coatings.

01Fillers
Particle type, dispersion, loading and interfaces all matter.
02Binder
Connects the particles and forms the coating on a substrate.
03Substrate & coating
Adhesion, coating thickness and the service environment are considered together.

Heat transfer in a composite depends on its fillers and interfaces. [1] Surface heat dissipation requires considering emissivity, temperature and convection together. [2]

Research & references

The research behind the principles.

These external publications explain general scientific principles. They do not replace GinnoLab product-specific performance evidence, test reports or certifications.

  1. 01

    Heat transfer in graphene composites

    Li, A.; Zhang, C.; Zhang, Y.-F. · 2017 · Polymers 9(9), 437

    Thermal Conductivity of Graphene-Polymer Composites: Mechanisms, Properties, and Applications

    A review of filler dispersion, orientation, loading and interfaces in heat transfer. It concerns polymer composites and does not directly validate GinnoLab’s inorganic formulations.

  2. 02

    Ceramic surfaces and heat dissipation

    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 Armoring

    An 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.

  3. 03

    Inorganic intumescent fire-protective coatings

    Fu, A. et al. · 2025 · Progress in Organic Coatings 199, 108939

    Intumescent coatings: Comprehensive advances with a focus on inorganic-dominant systems

    A 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.

Core Inorganic Binder Technology

  • Precise control of 8 raw materials and 320 variable parameters
  • 12-hour reaction process at 80–90℃
  • Optimized inorganic material composition and mixing ratios
  • Step-by-step quality management system across the process

Manufacturing Process Excellence

  • Micro/nano particularization of ceramic fillers
  • Perfect binder–ceramic bonding technology
  • High-speed homogeneous mixing via homogenizer
  • Precise particle-size management
Products

Product Lineup

Customized coating solutions tailored to the diverse needs of our customers.

BEST SELLER

Nano-Ceramic Non-Combustible Coating

Blocks flame and heat above 1,000℃ with zero toxic gas in a fire. Outstanding durability provides a near-permanent fire-protection zone effect.

✓ Non-combustible ✓ One-component ✓ Spray applicable
HIGH PERFORMANCE

Nano-Ceramic Heat-Dissipation Coating

21% better performance than conventional heat sinks, with thermal conductivity above 4 W/mK and emissivity above 0.85 — optimized for electronics thermal management.

✓ Heat dissipation ✓ High emissivity ✓ Insulating

Thermal coating application guide · Fire-safety coating application guide

Validation

Validated Performance

Proven to deliver industry-leading performance through PoC programs with major corporations.

6°
Temperature reduction vs. uncoated heat sink
3°
Additional improvement vs. competitor coatings
21%
Performance gain vs. existing thermal pads
64→1
Ranked #1 in a major-enterprise PoC

Heat-sink surface temperature reduction

Uncoated
0℃
Competitor coating
−3℃
GinnoLab
−6℃

Temperature reduction vs. an uncoated heat sink, measured in a major-enterprise PoC.

Calculate the ROI for your own site

Enter your server-room area, cooling load, and electricity rate to see the annual energy savings and payback period.

Open the ROI simulator →

Working Alongside Trusted Partners

Universities, research institutes and investors behind our R&D and growth.

Kangwon National University Technology Holdings
Kangwon National University
Yonsei University
Hallym University
Korea Institute of Energy Research
Korea Institute of Ceramic Engineering and Technology

Supported by

Ministry of SMEs and Startups
Korea Institute of Startup & Entrepreneurship Development
Korea SMEs and Startups Agency
Korea Technology Finance Corporation
Korea Mine Rehabilitation and Mineral Resources Corporation
Gangwon State
Taebaek City
Kangwon Land
Gangwon Technopark
Gyeonggi Center for Creative Economy & Innovation
Seoul Business Agency (SBA)
Korea Business Angels Association
D.CAMP
Gangwon Center for Creative Economy & Innovation
Seoul Center for Creative Economy & Innovation
Korea Technology and Information Promotion Agency for SMEs (TIPA)
광주전남
창조경제혁신센터
Small Enterprise and Market Service
Shinhan Financial Group Hope Foundation
Enterprise PoC partners
Global Electronics Corp.
Global Tech Corp.
Sustainability

Responsible Technology. Sustainable Growth.

Explore GinnoLab’s principles for people, the environment and responsible business. Our commitments connect research, sourcing and external manufacturing.

Anonymous Grievances & Suggestions

Questions, suggestions & grievances: coo@ginnolab.com · 010-9201-2448

Insights

Insights

R&D results and materials-science know-how from our lab.

View all insights →

Contact

Building a Safer Future, Together

Product inquiries, quote requests, technical consulting — reach out about anything, anytime.

Address

Room 203, 22 Sicheong-ro, Wonju-si, Gangwon-do, Republic of Korea

Fax

+82 504-958-1746

Email

ceo@ginnolab.com

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