Significant reduction of the precious metal catalyst loading is one of the key challenges for the commercialization of proton-exchange membrane water electrolyzers. In this work we combine IrOx nanofibers with a conventional nanoparticle-based IrOx anode catalyst layer. With this hybrid design we can reduce the iridium loading by more than 80% while maintaining performance. In spite of an ultralow overall catalyst loading of 0.2 mg(Ir)/cm(2), a cell with a hybrid layer shows similar performance compared to a state-of-the-art cell with a catalyst loading of 1.2 mg(Ir)/cm(2) and clearly outperforms identically loaded reference cells with pure IrOx nanoparticle and pure nanofiber anodes. The improved performance is attributed to a combination ...
1 page.Anthropogenic climate change has driven interest in the research and development of clean ene...
A family of dealloyed metal–oxide hybrid (M1M2@M1Ox) core@shell nanoparticle catalysts is demonstrat...
Abstract Photocatalysis and electrolysis are crucial processes for the development of a sustainable,...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
A stable and cost effective oxygen evolution reaction (OER) catalyst is crucial for the large-scale ...
A stable and cost effective oxygen evolution reaction (OER) catalyst is crucial for the large-scale ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
1 page.Anthropogenic climate change has driven interest in the research and development of clean ene...
A family of dealloyed metal–oxide hybrid (M1M2@M1Ox) core@shell nanoparticle catalysts is demonstrat...
Abstract Photocatalysis and electrolysis are crucial processes for the development of a sustainable,...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
We have developed a highly active nanostructured iridium catalyst for anodes of proton exchange memb...
A stable and cost effective oxygen evolution reaction (OER) catalyst is crucial for the large-scale ...
A stable and cost effective oxygen evolution reaction (OER) catalyst is crucial for the large-scale ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
1 page.Anthropogenic climate change has driven interest in the research and development of clean ene...
A family of dealloyed metal–oxide hybrid (M1M2@M1Ox) core@shell nanoparticle catalysts is demonstrat...
Abstract Photocatalysis and electrolysis are crucial processes for the development of a sustainable,...