The transition to a defossilized chemical industry requires not only more active catalysts but also understanding catalyst deactivation. In Nature Catalysis , Liu and co-workers reveal how atomic migration drives catalyst aging during non-oxidative ethane dehydrogenation, offering broader insights for designing durable, resource-efficient catalysts for alkane dehydrogenation technologies.
Keeping atoms in place for sustainable alkane dehydrogenation
Fornasiero, Paolo
2026
Abstract
The transition to a defossilized chemical industry requires not only more active catalysts but also understanding catalyst deactivation. In Nature Catalysis , Liu and co-workers reveal how atomic migration drives catalyst aging during non-oxidative ethane dehydrogenation, offering broader insights for designing durable, resource-efficient catalysts for alkane dehydrogenation technologies.File in questo prodotto:
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