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  • Zero binder · ionic fusion
  • SEM evidence · NDA-gated
  • Single pass · no multilayer
  • PFAS-free
  • Evidence-gated

A coating that fuses with metalno binder.

With no binder interface, delamination — the costliest coating failure — is designed out.

Final reliability and lifetime depend on substrate, process, use environment and test conditions, and must be validated through application-specific PoC.

Eco-friendly, high-performance material-origin technology platform · built on a CAS-registered inorganic material

vs

Conventional coating

✕ Delamination

Binder = weak interface

SAMUON fusion

✓ No delamination

Interface-free fusion

Where conventional coatings peel away, SAMUON becomes one with the metal.

Cross-sections are concept diagrams; measured SEM evidence is available via Evidence Package · NDA.

  • Zero-peel fusion
  • Binderless single-pass
  • PFAS-free mineral
  • Multifunctional surface
  • Source material

    PFAS-free, mineral-based source materials

  • Application data

    Per-industry conditions and test data

  • IP & know-how

    Material/application patents and process know-how

  • Licensing / JV deployment

    Industry deployment via licensing, JV, co-development

Fusion Advantage

The costliest coating failure is delamination.

SAMUON does not merely improve adhesion. It removes the binder interface and designs out a core failure mode through mineral fusion.

Conventional coating

Adhesion
Multilayer coating Primer / binder Delamination Substrate
  • Primer / binder / multilayer
  • Pore, crack & interfacial-separation risk

SAMUON fusion

Fusion
Fused functional layer Direct fusion · no binder Substrate
  • No binder
  • Direct fusion with the substrate
  • Targets a pore-free, crack-resistant fused interface
SEM image pending · NDA-gated evidence available

This visual is a conceptual fallback explaining adhesion versus fusion. Actual cross-section SEM evidence and test conditions are provided through the Evidence Package or NDA process.

  1. 01 Fusion No binder
  2. 02 No delamination Failure mode removed
  3. 03 Reliability Lifetime · uptime
  4. 04 Lower TCO Re-coating & downtime reduction potential

The interface is gone

Removes the binder third-phase and targets direct chemical/ionic fusion with the substrate.

The causes of delamination are removed

A structure that simultaneously reduces the core causes of delamination — weak interfaces, pores/cracks, and binder degradation.

The process is simpler

Reviews applicability based on a single-pass fusion process rather than repeated primer/multilayer steps.

“Delamination designed out” describes the mechanism of the binder-free fused structure; quantitative reliability and lifetime for each application depend on substrate, process, use environment and test conditions, and are confirmed through use-case PoC validation.

WHAT SAMUON IS

SAMUON is a material-origin technology platform

SAMUON is not a single product or one coating — it is an advanced material-origin technology platform spanning source materials, application data, patents and know-how, and the industrial deployment and commercialization models that carry them to market.

A B2B-centered source material technology supplier · licensing and JV-driven commercialization · selective B2C opportunities

01

Material brand

A technology brand with a PFAS-free, mineral-based advanced material identity.

02

Source material / substance

Inorganic mineral-based source materials and formulations that deliver function.

03

Application data

Application data capturing per-industry conditions and test results.

04

Patents & know-how

Material and application patents plus process know-how as core commercialization assets.

05

Applied products / parts / devices

Deployed into products, parts, components, and devices across applications.

06

Licensing / JV / strategic partnership

Core models: technology licensing, joint ventures, co-development, and strategic partnership.

07

Selective B2C opportunities

Where it fits, selected consumer (B2C) products can be pursued as opportunities.

PFAS-FREE TRANSITION

The PFAS transition — time to evaluate alternative coatings

As PFAS regulation tightens worldwide, demand is growing for alternative formulations in functional surface coatings. SAMUON supports this transition technically through a PFAS-free, mineral-based approach.

Conventional

  • Reliance on PFAS-based release/coatings
  • Supply and usage uncertainty as rules change
  • Limited validation data for alternatives

SAMUON approach

  • PFAS-free, mineral-based formulation
  • An alternative evaluation path aligned with regulation
  • Evidence with stated test conditions, plus PoC

※ Substitutability depends on substrate, process, and required performance, confirmed through individual technical review and PoC.

TECHNOLOGY SNAPSHOT

Technology snapshot

The core technical directions of the SAMUON coating platform. Each item is a design goal premised on test conditions and application review.

PFAS-free formulation

Engineered around a mineral-based composition that delivers function without per- and polyfluoroalkyl substances (PFAS).

Mineral-based matrix

A coating matrix built on inorganic mineral components, targeting surface functionality and durability characteristics.

Low-adhesion surface

Designed to exhibit low surface adhesion under test conditions, relevant to release and cleanability evaluations.

Thermal behavior

Thermal behavior is characterized over a stated range; validation is required for each process condition.

Process compatibility

Application compatibility with the target substrate and line conditions is assessed through PoC.

Regulatory direction

Offers an alternative-formulation direction aligned with tightening PFAS regulation, on a technical-review basis.

TOTAL COST OF OWNERSHIP

The largest cost of coating failure is delamination

Delamination is not merely surface damage — it can lead to equipment downtime, re-coating, quality risk, and regulatory-response cost. Through binderless fusion and single-coat multifunctionality, SAMUON explores the potential to reduce delamination risk, re-coating frequency, process complexity, and regulatory-transition cost.

01

Potential to reduce delamination risk

02

Potential to extend re-coating cycles

03

Potential single-coat process simplification

04

PFAS-free transition readiness

05

Integrated hygiene, durability, protection

Actual TCO improvement depends on application environment, substrate, process, operating conditions, and maintenance standards, and requires individual PoC and test validation.

EVIDENCE

Evidence matrix

Key evaluation items and their test status at a glance. Detailed values and reports are provided via the technical data request.

SAMUON · evidence.matrix live
ID Property Indicator Method / standard Status
01 PFAS content No intentionally added PFAS By formulation design / analysis on request Tested
02 Surface release Low-adhesion behavior (qualitative) In-house release test / stated conditions Under evaluation
03 Abrasion resistance Appearance/function after abrasion cycles ASTM-type abrasion test (per condition) Under evaluation
04 Thermal range Stable behavior within stated range Thermal exposure test / stated range Under evaluation

All values are derived under the stated test conditions and may vary by application environment. Detailed data is available on request via the technical data form.

INDUSTRY DEPLOYMENT

Industry deployment

Industries and product/part/device areas where SAMUON’s material-origin technology can be deployed. Suitability and business model per field are confirmed through application validation (PoC).

Cookware & kitchenware

A field to deploy the material technology where a PFAS-alternative release surface is required.

Industrial parts & molds

Deployable to mold and industrial-part surfaces where release and cleanability matter.

Appliances & consumer surfaces

Deployable to appliance and consumer surfaces needing cleanability and protection.

Mobility & mechanical parts

Deployable to mechanical-part surfaces under abrasion and chemical exposure.

Electronics & precision surfaces

Deployable to electronics components and devices needing precision protective or release surfaces.

New application proposals

New applications beyond the categories above can be explored for deployment and commercialization via technical review and PoC.

Material Fit Simulator

Check applicability for your case

Step through material fit, PoC readiness, and the evidence pathway for your application context.

Open Material Demo Lab

WHY SAMUON

Trust & credibility

  • CAS-registered substance

    CAS RN 154948-26-2

  • SAMUON™ Trademark Application

    Trademark application filed

  • PFAS-free Oriented

    PFAS-free inorganic-based alternative

  • Test-data Based Review

    Review based on test-summary data.

  • Application-specific Validation Required

    Separate validation per use (food-contact, medical, water, semiconductor).

  • NDA-based Disclosure

    Confidential materials only after NDA

  • Licensing · JV · Co-development

    Licensing · co-dev · JV · strategic partnership

※ All performance statements are evidence-based; food-contact, medical, water, and semiconductor uses require separate certification and safety validation.

SAM ALLIANCE

Accelerating Industrial Deployment through SAM Alliance

Beyond the material itself, SAMUON accelerates domestic and global deployment through SAM Alliance — advancing validation, pilots, joint IP, certification, and commercialization together with industry, universities, research institutes, public agencies, and investors.

Explore Global Materials Network
  • Validation
  • Deployment
  • Joint IP
  • Commercialization

TECHNOLOGY COMMERCIALIZATION

From technical review to PoC — validated together