Alonso Rosas-Hernández
Affiliations: | Department of Chemistry | Aarhus University, Aarhus, Denmark |
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Parents
Sign in to add mentorCarlos Amador-Bedolla | grad student | ||
Erika Martin Arrieta | grad student | ||
Matthias Beller | grad student | ||
Jonas C. Peters | post-doc |
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Publications
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Hu XM, Liang HQ, Rosas-Hernández A, et al. (2024) Electrochemical valorization of captured CO: recent advances and future perspectives. Chemical Society Reviews |
Kolding KN, Bretlau M, Zhao S, et al. (2024) NHC-CDI Ligands Boost Multicarbon Production in Electrocatalytic CO Reduction by Increasing Accumulated Charged Intermediates and Promoting *CO Dimerization on Cu. Journal of the American Chemical Society. 146: 13034-13045 |
Batista GMF, Ebenbauer R, Day C, et al. (2024) Efficient palladium-catalyzed electrocarboxylation enables late-stage carbon isotope labelling. Nature Communications. 15: 2592 |
Lai Y, Watkins NB, Rosas-Hernández A, et al. (2021) Breaking Scaling Relationships in CO Reduction on Copper Alloys with Organic Additives. Acs Central Science. 7: 1756-1762 |
Wang J, Cheng T, Fenwick AQ, et al. (2021) Selective CO Electrochemical Reduction Enabled by a Tricomponent Copolymer Modifier on a Copper Surface. Journal of the American Chemical Society |
Nam DH, De Luna P, Rosas-Hernández A, et al. (2020) Molecular enhancement of heterogeneous CO reduction. Nature Materials. 19: 266-276 |
Li F, Thevenon A, Rosas-Hernández A, et al. (2019) Molecular tuning of CO-to-ethylene conversion. Nature |
Thevenon A, Rosas-Hernández A, Peters J, et al. (2019) In-situ Nanostructuring and Stabilization of Polycrystalline Copper by an Organic Salt Additive Promotes Electrocatalytic CO2 Reduction to Ethylene. Angewandte Chemie (International Ed. in English) |
Rosas-Hernández A, Steinlechner C, Junge H, et al. (2017) Photo- and Electrochemical Valorization of Carbon Dioxide Using Earth-Abundant Molecular Catalysts. Topics in Current Chemistry (Cham). 376: 1 |
Rosas-Hernández A, Alsabeh PG, Barsch E, et al. (2016) Highly active and selective photochemical reduction of CO2 to CO using molecular-defined cyclopentadienone iron complexes. Chemical Communications (Cambridge, England) |