Vitamin C-induced CO2 Capture Enables High-rate Ethylene Production in CO2 Electroreduction


Journal article


Jongyoun Kim, Taemin Lee, Hyun Dong Jung, Minkyoung Kim, Jungsu Eo, Byeongjae Kang, Hyeonwoo Jung, Jaehyoung Park, Daewon Bae, Yujin Lee, Sojung Park, Wooyul Kim, Seoin Back, Youngu Lee, Dae-Hyun Nam
Nature Communications, vol. 15, 2024, p. 192


https://doi.org/10.1038/s41467-023-44586-0
Cite

Cite

APA   Click to copy
Kim, J., Lee, T., Jung, H. D., Kim, M., Eo, J., Kang, B., … Nam, D.-H. (2024). Vitamin C-induced CO2 Capture Enables High-rate Ethylene Production in CO2 Electroreduction. Nature Communications, 15, 192. https://doi.org/10.1038/s41467-023-44586-0


Chicago/Turabian   Click to copy
Kim, Jongyoun, Taemin Lee, Hyun Dong Jung, Minkyoung Kim, Jungsu Eo, Byeongjae Kang, Hyeonwoo Jung, et al. “Vitamin C-Induced CO2 Capture Enables High-Rate Ethylene Production in CO2 Electroreduction.” Nature Communications 15 (2024): 192.


MLA   Click to copy
Kim, Jongyoun, et al. “Vitamin C-Induced CO2 Capture Enables High-Rate Ethylene Production in CO2 Electroreduction.” Nature Communications, vol. 15, 2024, p. 192, doi:10.1038/s41467-023-44586-0.


BibTeX   Click to copy

@article{jongyoun2024a,
  title = {Vitamin C-induced CO2 Capture Enables High-rate Ethylene Production in CO2 Electroreduction},
  year = {2024},
  journal = {Nature Communications},
  pages = {192},
  volume = {15},
  doi = {10.1038/s41467-023-44586-0},
  author = {Kim, Jongyoun and Lee, Taemin and Jung, Hyun Dong and Kim, Minkyoung and Eo, Jungsu and Kang, Byeongjae and Jung, Hyeonwoo and Park, Jaehyoung and Bae, Daewon and Lee, Yujin and Park, Sojung and Kim, Wooyul and Back, Seoin and Lee, Youngu and Nam, Dae-Hyun}
}


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