Room temperature CO2 reduction to solid carbon species on liquid metals featuring atomically thin ceria interfaces
While CO2 reduction proves an appealing means to convert greenhouse emissions to high-value products, there are few materials capable of such a conversion. Here, the authors demonstrate a liquid-metal electrocatalyst to convert CO2 directly into solid carbon that can be used as capacitor electrodes....
Enregistré dans:
Auteurs principaux: | Dorna Esrafilzadeh, Ali Zavabeti, Rouhollah Jalili, Paul Atkin, Jaecheol Choi, Benjamin J. Carey, Robert Brkljača, Anthony P. O’Mullane, Michael D. Dickey, David L. Officer, Douglas R. MacFarlane, Torben Daeneke, Kourosh Kalantar-Zadeh |
---|---|
Format: | article |
Langue: | EN |
Publié: |
Nature Portfolio
2019
|
Sujets: | |
Accès en ligne: | https://doaj.org/article/eb264c8971ae4cd8bcc84bb0f4f11d89 |
Tags: |
Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
|
Documents similaires
-
Publisher Correction: Room temperature CO2 reduction to solid carbon species on liquid metals featuring atomically thin ceria interfaces
par: Dorna Esrafilzadeh, et autres
Publié: (2019) -
Ionic imbalance induced self-propulsion of liquid metals
par: Ali Zavabeti, et autres
Publié: (2016) -
Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
par: Rouhollah Jalili, et autres
Publié: (2018) -
Correction: Corrigendum: Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals
par: Benjamin J. Carey, et autres
Publié: (2017) -
Wafer-scale two-dimensional semiconductors from printed oxide skin of liquid metals
par: Benjamin J. Carey, et autres
Publié: (2017)