H2-driven biocatalysis for flavin-dependent ene-reduction in a continuous closed-loop flow system utilizing H2 from water electrolysis
- DOI
- 10.1038/s42004-024-01288-y
- Published
- 2024-09-07
- Container
- Communications Chemistry
- Publisher
- Springer Science and Business Media LLC
- Open access
- unknown
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Cite this work
BibTeX
@article{allodium:10.1038/s42004-024-01288-y,
title = {H2-driven biocatalysis for flavin-dependent ene-reduction in a continuous closed-loop flow system utilizing H2 from water electrolysis},
author = {Guiyeoul Lim and Donato Calabrese and Allison Wolder and Paul R. F. Cordero and Dörte Rother and Florian F. Mulks and Caroline E. Paul and Lars Lauterbach},
year = {2024},
journal = {Communications Chemistry},
doi = {10.1038/s42004-024-01288-y},
url = {https://doi.org/10.1038/s42004-024-01288-y}
}RIS
TY - JOUR TI - H2-driven biocatalysis for flavin-dependent ene-reduction in a continuous closed-loop flow system utilizing H2 from water electrolysis AU - Guiyeoul Lim AU - Donato Calabrese AU - Allison Wolder AU - Paul R. F. Cordero AU - Dörte Rother AU - Florian F. Mulks AU - Caroline E. Paul AU - Lars Lauterbach PY - 2024 JO - Communications Chemistry DO - 10.1038/s42004-024-01288-y UR - https://doi.org/10.1038/s42004-024-01288-y ER -
APA
Lim, G., Calabrese, D., Wolder, A., Cordero, P. R. F., Rother, D., Mulks, F. F., Paul, C. E., & Lauterbach, L. (2024). H2-driven biocatalysis for flavin-dependent ene-reduction in a continuous closed-loop flow system utilizing H2 from water electrolysis. Communications Chemistry. https://doi.org/10.1038/s42004-024-01288-y
Source records
- crossref · retrieved 2026-09-26T06:54:58.108Z