Research Project

Selective CO₂ Capture Using Metal-Organic Frameworks (MOFs)

(TRL 6–7)
Eco-Remediation
28|10|2025
Working for
a Safer World.
Project Lead
Dr. Stuart R. Miller
Computational Chemistry

Accelerating next-gen carbon capture through Al-guided materials discovery

This research project focuses on the design, synthesis, and validation of novel metal-organic framework (MOF) materials optimized for the selective capture of carbon dioxide.

By leveraging MDRI’s AI-native discovery platform, the team identifies high-surface-area, high-affinity MOF candidates capable of capturing CO₂ from industrial and atmospheric sources with superior efficiency and durability.

Project Goals

MOF Optimization

This research project focuses on the design, synthesis, and validation of novel metal-organic framework (MOF) materials optimized for the selective capture of carbon dioxide.

By leveraging MDRI’s AI-native discovery platform, the team identifies high-surface-area, high-affinity MOF candidates capable of capturing CO₂ from industrial and atmospheric sources with superior efficiency and durability.

Applications

  • Industrial Carbon Capture: Integration into flue gas treatment systems at power plants, cement factories, and steel mills
  • Direct Air Capture (DAC): Use in scalable DAC units for atmospheric CO₂ removal
  • Indoor Air Quality Systems: Incorporation into HVAC systems for high-efficiency CO₂ filtering in enclosed environments

Project Status

  • TRL 6–7: Scale-up and system integration testing in partnership with industrial collaborators

Resources & Data

Why it Matters

This project exemplifies how MDRI’s AI-native lab infrastructure accelerates not only material discovery but also real-world deployment. By developing next-generation materials for CO₂ capture, we are contributing tangible solutions to one of the most urgent climate challenges.

Project Team

“Applied research is key to making global scale impacts.”

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