The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐splitting cells and metal–air batteries. Ni‐Fe layered double hydroxides (LDHs) have been reported as promising OER electrocatalysts in alkaline electrolytes. The rational design of advanced nanostructures for Ni‐Fe LDHs is highly desirable to optimize their electrocatalytic performance. Herein, we report a facile self‐templated strategy for the synthesis of novel hierarchical hollow nanoprisms composed of ultrathin Ni‐Fe LDH nanosheets. Tetragonal nanoprisms of nickel precursors were first synthesized as the self‐sacrificing template. Afterwards, these Ni precursors were consumed during the hydrolysis of iron(II) sulfate for the simultaneous ...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Delicate design of nanostructures for oxygen‐evolution electrocatalysts is an important strategy for...
It is extensively accepted that electrolysis of water producing regenerable energy is a crucial subs...
It is extensively accepted that electrolysis of water producing regenerable energy is a crucial subs...
Developing nonprecious and effective catalysts for electrochemical oxygen evolution reaction (OER) r...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Delicate design of nanostructures for oxygen‐evolution electrocatalysts is an important strategy for...
It is extensively accepted that electrolysis of water producing regenerable energy is a crucial subs...
It is extensively accepted that electrolysis of water producing regenerable energy is a crucial subs...
Developing nonprecious and effective catalysts for electrochemical oxygen evolution reaction (OER) r...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Highly active, durable, and cost-effective electrocatalysts for water oxidation to evolve oxygen gas...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
Layered double hydroxides (LDHs) containing first-row transition metals such as Fe, Co, and Ni have ...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Cost-effective electrocatalysts based on nonprecious metals for efficient water splitting are crucia...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...