Highly active, durable, and inexpensive nanostructured catalysts are crucial for achieving efficient and economical electrochemical water splitting. However, developing efficient approaches to further improve the catalytic ability of the well-defined nanostructured catalysts is still a big challenge. Herein, we report a facile and universal cation-exchange process for synthesizing Fe-doped Ni(OH)2 and Co(OH)2 nanosheets with enriched active sites toward enhanced oxygen evolution reaction (OER). In comparison with typical NiFe layered double hydroxide (LDH) nanosteets prepared by the conventional one-pot method, Fe-doped Ni(OH)2 nanosheets evolving from Ni(OH)2 via an Fe3+/Ni2+ cation-exchange process possess nanoporous surfaces with abundan...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
To overcome the limited potency of energy devices such as alkaline water electrolyzers, the construc...
One crucial pattern to vigorously develop renewable energy is to exploit high-performance oxygen evo...
Highly active, durable, and inexpensive nanostructured catalysts are crucial for achieving efficient...
Oxygen evolution reaction (OER) involves multiple electron-transfer processes, resulting in a high a...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Developing efficient and durable bifunctional electrocatalysts for oxygen reduction and evolution r...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
We propose a facile approach to synthesise ultrathin iron oxyhydroxide nanosheets for use in catalys...
The oxygen evolution reaction is a key reaction in water splitting. The common approach in the devel...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
Efficient catalysis of the oxygen-evolution half-reaction (OER) is a pivotal requirement for the dev...
D.T., S.J., J.C., and V.N. wish to thank the support of the ERC CoG, 3D2DPring (GA 681544) and PoC P...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Transition metal oxides (TMOs) nanosheets comprised of earth abundant Fe, Co,and Ni elements have be...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
To overcome the limited potency of energy devices such as alkaline water electrolyzers, the construc...
One crucial pattern to vigorously develop renewable energy is to exploit high-performance oxygen evo...
Highly active, durable, and inexpensive nanostructured catalysts are crucial for achieving efficient...
Oxygen evolution reaction (OER) involves multiple electron-transfer processes, resulting in a high a...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Developing efficient and durable bifunctional electrocatalysts for oxygen reduction and evolution r...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
We propose a facile approach to synthesise ultrathin iron oxyhydroxide nanosheets for use in catalys...
The oxygen evolution reaction is a key reaction in water splitting. The common approach in the devel...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
Efficient catalysis of the oxygen-evolution half-reaction (OER) is a pivotal requirement for the dev...
D.T., S.J., J.C., and V.N. wish to thank the support of the ERC CoG, 3D2DPring (GA 681544) and PoC P...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Transition metal oxides (TMOs) nanosheets comprised of earth abundant Fe, Co,and Ni elements have be...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
To overcome the limited potency of energy devices such as alkaline water electrolyzers, the construc...
One crucial pattern to vigorously develop renewable energy is to exploit high-performance oxygen evo...