The sluggish kinetics of the oxygen evolution reaction (OER) is the bottleneck for the practical exploitation of water splitting. Here, the potential of a core–shell structure of hydrous NiMoO4 microrods conformally covered by Co3O4 nanoparticles via atomic layer depositions is demonstrated. In situ Raman and synchrotron-based photoemission spectroscopy analysis confirms the leaching out of Mo facilitates the catalyst reconstruction, and it is one of the centers of active sites responsible for higher catalytic activity. Post OER characterization indicates that the leaching of Mo from the crystal structure, induces the surface of the catalyst to become porous and rougher, hence facilitating the penetration of the electrolyte. The presence of...
ABSTRACT Mesoporous Co 3 O 4 has been prepared using porous silica as a hard template via a nanocast...
The precise design of nanomaterials is a promising approach, but remains a challenge toward the deve...
The development of cost-efficient and long-term stable catalysts for the oxygen evolution reaction (...
The sluggish kinetics of the oxygen evolution reaction (OER) is the bottleneck for the practical exp...
Abstract Rational reconstruction of oxygen evolution reaction (OER) pre-catalysts and performance in...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
Hierarchical nanostructures have attracted considerable research attention due to their applications...
The design of highly efficient electrocatalysts containing non-precious metals is crucial for promot...
International audienceWater electrolysis powered by renewable energies is a promising technology to ...
Water splitting catalysed by earth-abundant materials is pivotal for global- scale production of non...
Electrochemical water splitting is one of the potential approaches for making renewable energy produ...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Implementing the hierarchical structures of non-noble-metal-based electrocatalysts and modulating th...
Transition metal phosphates, as the most promising catalyst for oxygen evolution reaction (OER), hav...
ABSTRACT Mesoporous Co 3 O 4 has been prepared using porous silica as a hard template via a nanocast...
The precise design of nanomaterials is a promising approach, but remains a challenge toward the deve...
The development of cost-efficient and long-term stable catalysts for the oxygen evolution reaction (...
The sluggish kinetics of the oxygen evolution reaction (OER) is the bottleneck for the practical exp...
Abstract Rational reconstruction of oxygen evolution reaction (OER) pre-catalysts and performance in...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
Hierarchical nanostructures have attracted considerable research attention due to their applications...
The design of highly efficient electrocatalysts containing non-precious metals is crucial for promot...
International audienceWater electrolysis powered by renewable energies is a promising technology to ...
Water splitting catalysed by earth-abundant materials is pivotal for global- scale production of non...
Electrochemical water splitting is one of the potential approaches for making renewable energy produ...
Water electrolysis powered by renewable energies is a promising technology to produce sustainable fo...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Implementing the hierarchical structures of non-noble-metal-based electrocatalysts and modulating th...
Transition metal phosphates, as the most promising catalyst for oxygen evolution reaction (OER), hav...
ABSTRACT Mesoporous Co 3 O 4 has been prepared using porous silica as a hard template via a nanocast...
The precise design of nanomaterials is a promising approach, but remains a challenge toward the deve...
The development of cost-efficient and long-term stable catalysts for the oxygen evolution reaction (...