Integrating CO2 capture and electrochemical conversion may lower energy consumption relative to the separated processes, but scale-up is limited by low carbon conversion and energy-intensive solvent regeneration. Now, research shows that piperazine, alongside a Ni single-atom catalyst, allows effective, stable CO2 capture, and conversion to CO in a low-energy process.
Binding and release in balance / Dattila, F.. - In: NATURE ENERGY. - ISSN 2058-7546. - 10:(2025), pp. 1189-1190. [10.1038/s41560-025-01884-9]
Binding and release in balance
Dattila F.
2025
Abstract
Integrating CO2 capture and electrochemical conversion may lower energy consumption relative to the separated processes, but scale-up is limited by low carbon conversion and energy-intensive solvent regeneration. Now, research shows that piperazine, alongside a Ni single-atom catalyst, allows effective, stable CO2 capture, and conversion to CO in a low-energy process.File in questo prodotto:
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News-and-Views-2025-Dattila_accepted.pdf
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Utilizza questo identificativo per citare o creare un link a questo documento:
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