Solar water splitting by photovoltaic-electrolysis with a solar-to-hydrogen efficiency over 30%
In order to be practical for large-scale deployment, the cost of solar hydrogen generation must be significantly reduced. Here, the authors employ a triple-junction solar cell with two series connected polymer electrolyte membrane electrolysers to achieve solar to hydrogen efficiency of 30%.
Enregistré dans:
Auteurs principaux: | Jieyang Jia, Linsey C. Seitz, Jesse D. Benck, Yijie Huo, Yusi Chen, Jia Wei Desmond Ng, Taner Bilir, James S. Harris, Thomas F. Jaramillo |
---|---|
Format: | article |
Langue: | EN |
Publié: |
Nature Portfolio
2016
|
Sujets: | |
Accès en ligne: | https://doaj.org/article/e7c443870fff43c2945d2099a57e6e8c |
Tags: |
Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
|
Documents similaires
-
Optimal design and experimental test of a solar simulator for solar photovoltaic modules
par: Rodrigo Cortés‐Severino, et autres
Publié: (2021) -
Impacts of solar intermittency on future photovoltaic reliability
par: Jun Yin, et autres
Publié: (2020) -
Operation and physics of photovoltaic solar cells: an overview
par: Noemi Guerra, et autres
Publié: (2018) -
Unassisted photoelectrochemical water splitting exceeding 7% solar-to-hydrogen conversion efficiency using photon recycling
par: Xinjian Shi, et autres
Publié: (2016) -
Robust space–time modeling of solar photovoltaic deployment
par: Sergio Copiello, et autres
Publié: (2021)