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Scalable Preparation of Membranes Based on Graphene with A-scale Pores: Synthesis and Applications - Ceren Kocaman

EPFL
2026
graphene
carbon capture
Carbon Dioxide
CO₂ Separation
climate change
global warming
Gas Separation
Molecular Filtration
Graphene Membranes
nanotechnology
nanopores
Atomic Materials
industrial emissions
greenhouse gases
chemical engineering
materials science
membrane technology
Selective Filtration
Industrial Decarbonisation
clean technology
environmental engineering
Light-Activated Chemistry
Reactive Chemicals
Room-Temperature Processing
sustainable industry
carbon reduction
Advanced Materials
Molecular Sieves
Industrial Deployment
Climate Innovation

This research develops atomically thin graphene filters that selectively capture carbon dioxide from industrial gases. By creating precisely sized pores using light and a reactive chemical, the process works at room temperature, is 300 times faster than conventional methods, and could enable production of large filters for industrial carbon capture.

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