About

About Boryum cover image
BoryumNanotechnology

Scalable, validated solutions with boron-based advanced materials

Boryum Nanotechnology develops boron-based advanced materials—especially borophene and boron-derived 2D nanostructures— with scientific depth and industrial discipline. Our priority is to transform these technologies into scalable products that address real needs in hydrogen storage and broader energy, coatings/composites, and high-performance industrial applications.

Focus: Borophene / 2D Nanostructures Field: Hydrogen Technologies Flow: Design → Validation → Pilot → Product

Mission

Boryum Nanotechnology’s mission is to develop boron-based advanced materials—especially borophene and boron-derived 2D nanostructures— with scientific depth and industrial discipline; to convert them into scalable products that meet real needs, primarily in hydrogen storage as well as energy, coatings/composites, and high-performance industrial applications; and to bring these products to market through a sustainable commercialization model.

Target users & customer segments

R&DUsers

R&D users

Universities, research institutes, and corporate R&D teams: borophene/advanced nanomaterial samples, dispersions, coatings/inks, and analysis services.

IndustryDevelopment

Industrial product developers

Energy, composites/coatings, and functional surfaces: performance-targeted material components, process compatibility, and supply continuity.

H₂Ecosystem

Hydrogen ecosystem

Storage materials, sub-components, and system integration: a validated material platform designed for safety, cycle life, and performance verification.

Research topics being studied

2DProducts

Borophene / 2D material products

Powder, film, dispersion, coating/ink, and composite additive formats.

H₂Platform

Hydrogen storage material platform

Design, development, and integration approach using boron-based and related nanomaterials.

TestData

Testing/analysis & characterization

Standard protocols, reporting, validation, and technical data generation.

DigitalEngineering

Digital engineering & software

Simulation/modeling, data analytics, process monitoring-optimization, and AI-assisted design tools.

IPCommercial

IP & commercialization

Patents/know-how, licensing, co-development, and national/international collaborations.

Commitments

ScienceEvidence

Scientific accuracy

A culture of grounding every claim in data and verification.

QualityRepeatable

Industrial repeatability

Lot traceability, specification discipline, and a quality assurance mindset.

EHSSafety

Safe & responsible innovation

EHS principles and safe process design for nanomaterials.

SustainableEfficiency

Sustainability

Process and product architecture focused on energy and resource efficiency.

EcosystemPartnership

Open ecosystem collaboration

Creating value with the university–industry–technopark and public ecosystem.

Vision

Boryum Nanotechnology’s vision is to become a globally recognized advanced materials technology company in boron-based 2D materials— especially borophene—and to rise as a preferred solution partner in the hydrogen technologies ecosystem with validated performance and scalable production capability.

Measurable target areas

PortfolioProducts

Product portfolio

At least two main product families for borophene derivatives and hydrogen storage materials, plus at least one digital product/service component.

Scale-upProduction

Scale-up

Stable quality and cost competitiveness when moving from pilot scale to pre-series/series production.

MarketExport

Commercialization

A customer pipeline that converts POCs into recurring orders and export capacity.

IPPartnership

IP creation

Patent families, licensing, and strategic partnership agreements.

Material development approach

From composition design to microstructure and phase control, we follow a development workflow that helps reach the target performance window for the intended application.

R&D and testing

Testing, validation & documentation

We evaluate performance not with a single metric, but together with stability, cycle life, safety, and consistency. Results are turned into data-backed technical sheets and application notes.