As high-quality substitutes for conventional catalysts, the bifunctional catalytic properties of the coating of transition-metal-based materials are pivotal for improving water-splitting efficiency. Herein, cobalt-molybdenum bimetallic phosphide nanofibers (CoMoP NFs) were synthesized via a series of facile strategies, which are divided into pyrolysis electrospun PAN and metal salts, to obtain one-dimensional morphology and a gas-solid phosphating precursor. The obtained CoMoP NFs catalyst has superior catalytic activity performance in 1M KOH. Serving as an oxygen evolution reaction (OER) catalyst, the electrode of the CoMoP NFs affords different kinds of current densities at 50 mA cm−2 and 100 mA cm−2, with low overpotentials of 362 and 39...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
The preparation of highly active, sustainable, nonprecious metal materials as hydrogen evolution and...
Hydrogen production via water splitting has been extensively explored over the past few decades, and...
The development of high-performance and cost-effective earth-abundant transition metal-based electro...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
Altres ajuts: IREC is funded by the CERCA Programme/Generalitat de Catalunya. ICN2 is funded by the ...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
The development of high current density anodes for the oxygen evolution reaction (OER) is fundamenta...
The development of high current density anodes for the oxygen evolution reaction (OER) is fundamenta...
The development of high current density anodes for the oxygen evolution reaction (OER) is fundamenta...
Hydrogen production via water splitting is a promising pathway to a clean energy resource. Herein we...
Noble-metal-free hydrogen/oxygen evolution reaction (HER/OER) electrocatalysts, especially bifunctio...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
The preparation of highly active, sustainable, nonprecious metal materials as hydrogen evolution and...
Hydrogen production via water splitting has been extensively explored over the past few decades, and...
The development of high-performance and cost-effective earth-abundant transition metal-based electro...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
Altres ajuts: IREC is funded by the CERCA Programme/Generalitat de Catalunya. ICN2 is funded by the ...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
The development of high current density anodes for the oxygen evolution reaction (OER) is fundamenta...
The development of high current density anodes for the oxygen evolution reaction (OER) is fundamenta...
The development of high current density anodes for the oxygen evolution reaction (OER) is fundamenta...
Hydrogen production via water splitting is a promising pathway to a clean energy resource. Herein we...
Noble-metal-free hydrogen/oxygen evolution reaction (HER/OER) electrocatalysts, especially bifunctio...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
The preparation of highly active, sustainable, nonprecious metal materials as hydrogen evolution and...
Hydrogen production via water splitting has been extensively explored over the past few decades, and...