A Method of Synthesising Atomically Dispersed CO2-N6 and Fe-N4 Costructures Anchored on Hierarchical Porous Carbon Host
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- A Method of Synthesising Atomically Dispersed CO2-N6 and Fe-N4 Costructures Anchored on Hierarchical Porous Carbon Host
Technology Overview
This invention presents new ternary-atom catalysts, featuring Co Co dimers and Fe single sites anchored on graphitised carbon. These catalysts outperform traditional Pt/C-based catalysts in the Oxygen Reduction Reaction (ORR), improving the performance and efficiency of batteries and fuel cells.
Catalyst for renewable energy storage systems
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Breakthrough Catalyst Performance:
Novel ternary-atom catalyst design
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Enhanced Energy Efficiency:
Improves battery and fuel cell performance, enable higher energy density and support extend operational lifespan of energy system
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Maritime Electrification Enabler:
Ideal for electric and hybride-electric propulsion systems and contribute to maritime decarbonisation goals
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Durability and Structural Innovation:
Durability and Structural Innovation
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Cost and Scalability Advantage:
Reduces dependence on expensive platinum-based catalysts , lower material cost and improve scalability
Maritime Use Cases

The advanced materials developed through this IP could be used to create high-energy density and long-lasting batteries or fuel cells for maritime applications, powering electric or hybrid-electric propulsion systems, as well as on-board equipment and systems.

These materials could also find use in the development of lightweight, corrosion resistant structural components for maritime vessels, offshore platforms, or underwater vehicles, improving their performance and durability.”
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