Novel Fullerene-Based Hydrogel Platform.

Adaptive. Reversible. Antioxidant.

Experimental materials research. Application suitability has not yet been established.

MATERIAL PLATFORM

A material system shaped by water, carbon and structural persistence.

Our current work focuses on documenting what the material does, identifying its chemical composition, and separating observed behavior from mechanisms that remain under investigation.

Water-Rich Matrix

Water-Rich Matrix

Predominantly aqueous hydrogel with high water content.

Reversible Behavior

Reversible Behavior

Transitions between gel, solid and liquid states. Rehydrates and reconstructs its structure.

Stable and Robust

Stable & Robust

Maintains structural integrity through repeated washing and handling.

Nanomaterial Platform

Nanomaterial Platform

Fullerene-derived chemistry enables unique self-assembly and material behavior.

Scientific evidence

Evidence to date.

Current analytical work is establishing composition, functional groups and structural signatures across original, washed and dried samples.

Completed01

XPS

Surface chemistry

Used to identify detected elements and investigate their chemical environments at the material surface.

Completed02

Raman

Structural signatures

Used to compare carbon-related spectral features across standard and washed material samples.

Completed03

ATR-FTIR

Functional groups

Used to assess hydroxyl-, water- and oxygen-associated spectral features in the hydrated matrix.

Next phase04

Physical testing

Performance and reproducibility

Rheology, mechanical behavior, stability, particle structure and repeatable specifications remain priorities.

1Material preparationEstablished
2Physicochemical characterizationIn progress
3Mechanism and specificationsCurrent priority
4Safety and compatibilityPlanned
5Application validationPlanned

Research directions

Potential research directions.

These are potential research directions, not validated product claims. Each application requires dedicated performance, safety and regulatory evaluation.

01

Advanced aqueous materials

Adaptive, high-water-content systems and interfaces.

02

Biomaterial research

Exploratory work on hydrated matrices and material compatibility.

03

Controlled-delivery research

Investigation of loading, release and molecular interaction behavior.

04

Cosmetic formulation research

Evaluation as an experimental material within formulation science.

05

Functional coatings and interfaces

Exploration of water-compatible carbon-containing material systems.

R&D Evaluation

Choose how you want to work with C60(OH) hydrogel.

Start with an independent sample, move into a supported application evaluation, or discuss a larger development partnership.

  • 01 30 mL R&D Sample — $375
  • 02 Application Evaluation — $1,500
  • 03 R&D Partnership — Custom

Ready to evaluate the material?

The R&D Evaluation page includes the two material modes, package details, characterization data, current measured properties, and one request form for all options.

Open R&D Evaluation

Experimental R&D material. Application suitability and biological performance have not yet been established.

About C60(OH) Labs

From scientific observation to practical application.

C60(OH) Labs is an early-stage materials research venture based in Seattle, Washington. We are developing and characterizing hydrated fullerene-derived systems while investigating the path from reproducible material behavior to a validated commercial application.

We're looking for researchers, product teams, investors, and strategic partners who are interested in advancing this technology.