MATERIALS TECHNOLOGY / GERMANY

Advanced materials,
made sustainable.

Felderion is building electric-field-assisted manufacturing technologies to produce, transform and recover advanced materials with lower energy consumption, lower carbon emissions and greater circularity.

F / 01ADVANCED MATERIAL SYSTEMS
Electrically driven materials manufacturing
Lower energy and CO₂ per kilogram
Circular recovery and reuse of materials

Modern life is built on materials with a heavy footprint.

Advanced materials underpin modern industry and the technologies society increasingly relies on.

Yet many are still produced through energy-intensive, emissions-heavy and linear processes. Lowering the material footprint is therefore essential to lowering the embedded footprint of the greener technologies used by consumers and industry.

40–60%

McKinsey estimates that batteries can account for 40–60% of the embedded production emissions of an electric vehicle. The broader message is clear: decarbonising end products requires decarbonising the materials behind them.

Source: McKinsey & Company, 2023
THE OPPORTUNITYLess input.
More material value.

Rethinking the process at material level.

Electrical energy as a
materials-processing tool.

Felderion is building electric-field-assisted and electrothermal technologies that control how energy is delivered to material systems, creating new pathways for efficient transformation, regeneration and manufacturing.

01

Apply

Deliver precisely controlled electrical energy to the material system.

02

Transform

Use controlled electrical, thermal and atmospheric conditions to drive targeted material change.

03

Recover

Upgrade recovered feedstocks and return material value to productive use.

FIELD-ASSISTEDPROCESS-AWAREMATERIAL-SPECIFICSCALABLE AMBITION

Starting with high-value materials where energy, carbon and circularity matter.

Our platform is being developed through selected material cases. Technical details and validated performance data will be published as the work progresses.

01

Regenerated anode graphite

Upgrading recovered graphite toward controlled, reusable material states while preserving material value.

IN DEVELOPMENT
02

Silicon carbide

Exploring electrically assisted synthesis routes for high-value carbide materials with lower process intensity.

UNDER EVALUATION
03

Advanced carbides and carbon materials

Assessing further high-performance materials, including titanium carbide and related electrically processable systems.

FUTURE PIPELINE

From scientific principle to industrial process.

Our current work focuses on material validation, process control, energy measurement, carbon benchmarking and scale-up. We build the evidence step by step, from laboratory feasibility to industrial integration.

01Material validation
02Process optimisation
03Performance verification
04Pilot scale
05Industrial integration
LONG-TERM AMBITION
UP TO 50%
LOWER CO₂ PER KILOGRAM

Measure impact
where it matters.

We are working toward reducing the CO₂ footprint per kilogram of material, with a long-term ambition of up to 50% against clearly defined conventional reference processes.

Lower-carbon materials can reduce the embedded footprint of the technologies and products built from them. Actual performance will depend on the material, process route, electricity source and production scale, and will be assessed through transparent, material-specific data.

Material-specific evaluation
Reference-based comparison
Evidence-led development

Materials should
keep moving.

Felderion approaches circularity as a technical design challenge. Our aim is to regenerate, upgrade and reuse recovered materials while preserving the performance that makes them valuable.

01Recover

Identify and recover valuable material streams for further processing.

02Refine

Regenerate and upgrade materials toward useful, controlled states.

03Return

Return upgraded material value to productive use.

Science-led materials technology for industrial impact and societal value.

Felderion is a Germany-based deep-tech venture developing a new generation of electrically driven materials processes.

We translate materials science and process physics into scalable manufacturing technologies designed to meet industrial performance requirements while reducing energy use, emissions and material loss.

Science-led
Application-focused
Systems-minded

BUILD THE NEXT MATERIAL PROCESS

Complex materials challenges
need the right partners.

We are currently building and validating the Felderion technology platform. Further technical and application details will be released as development milestones are completed.

If you are interested in becoming an industrial, research or strategic partner, contact us to begin a confidential discussion.

Become a Partner
01Industry

Joint development and application pathways.

02Research

Scientific cooperation and technology validation.

03Investment

Strategic investment for technology validation and industrial scale-up.

Let’s change how
materials are made.

Felderion is currently building its technology and partnership network. Contact us to discuss material validation, joint development, scale-up or strategic collaboration.

FELDERION

Germany
Working across European research and industry networks.