CAREER

Build CCU Chemistry that Makes the World Greener

Carbience is looking for people who can connect scientific rigor, process execution, and material commercialization for climate-responsive industrial chemistry.

WHY JOIN CARBIENCE

Join a Focused Team Building CCU Infrastructure

CO₂ Conversion for Climate Impact

The work requires catalyst thinking, process discipline, analytical validation, and scale-up realism.

Real Markets

Carbience develops cyclic carbonate materials, non-isocyanate polyurethane platforms, eco-polyols, and industrial carbon capture and utilization pathways.

Close Technical-Commercial Feedback

Join a focused deeptech team where chemistry, engineering, and commercialization decisions are closely connected.

From Proof to Commercial Scale

Help shape a company moving from lab-scale proof toward pilot preparation, product validation, and licensing-oriented expansion.

CULTURE

Scientific Rigor, Industrial Discipline, and Warm Collaboration

Carbience culture is designed for builders who respect data, move with focus, and work across technical and commercial boundaries.

Claims Must be Backed by Process Conditions

Analysis, reproducibility, and clear technical scope matter.

Materials Must Enter Real Value Chains

A material is only meaningful when it can enter a real product, process, or value chain.

Small Team Decisions Must Matter

We prioritize decisions that advance proof, scale-up, IP, or partnership readiness.

Chemistry and Business Must Speak

Chemistry, process engineering, business development, and design must speak to each other from the start.

TALENT AREAS

We Look for People Who Can Connect Scientific Depth with Execution

Chemical Process Engineering

Process Design and Scale-up

Process design, scale-up, reaction engineering, pilot systems, and manufacturing feasibility.

CO₂ Capture / Adsorption Engineering

RCC Advancement

Absorbent systems, adsorption-related process design, RCC advancement, and integration with conversion pathways.

Organic Synthesis & Catalysis

Reaction Optimization

Catalyst systems, carbonate synthesis, epoxide conversion, reaction optimization, and analytical validation.

Polymer & Materials Science

Performance-driven Material Development

NIPU, polyurethane, eco-polyol, coatings, adhesives, and performance-driven material development.

Business Development / Strategic Partnerships

Deeptech Commercialization

Industrial partnership, licensing, investor relations, commercialization planning, and market entry strategy.

The Experts behind Carbience’s Path from CCU Chemistry to Commercial Carbon Reduction

Organic Chemistry Architect

Designs practical synthesis pathways that turn deep chemical expertise into scalable carbonate materials.

Scale-up Strategist

Bridges the gap between lab results and industrial production through process design and scale-up execution.

Environmental Solution Builder

Develops capture and adsorption approaches that connect environmental performance with real process needs.

Global Market Connector

Identifies market opportunities and connects Carbience’s technology with global partners and applications.

OPEN APPLICATION

Join Carbience’s CCU Talent Pool

If your experience connects with CO₂ conversion, cyclic carbonate chemistry, process engineering, polymer materials, catalysts, adsorption, or deep-tech commercialization, we’d like to hear from you — even beyond currently open roles.

Phone number

FAQ

Frequently Asked Questions

What kind of talent does Carbience hire?
Carbience looks for builders in CCU process chemistry, carbonate materials, application development, and commercial scale-up.
Is Carbience hiring only researchers?
No. Carbience needs both technical and commercialization talent, including process engineers, materials scientists, R&D specialists, partnership builders, and strategic business developers.
Can I apply without a posted position?
Yes. Carbience supports open applications for candidates whose expertise connects to CO₂ conversion, cyclic carbonate materials, process scale-up, or sustainable polymer pathways.