The development of highly efficient electrocatalysts for water splitting is great critical for the massive production of hydrogen energy. In this work, a kind of novel NiFe-LDHs@γ-MnOOH nanorod electrocatalyst was fabricated via the two-step method. Firstly, γ-MnOOH nanorods were grown in situ on the nickel foam conductive substrate by a simple hydrothermal method. Then, NiFe-LDHs were combined on the γ-MnOOH/NF surface by electrochemical deposition to prepare the NiFe-LDHs@γ-MnOOH/NF core-shell structure catalyst. Due to good charge transfer capability, high exposure of active sites as well as the interfacial interaction between NiFe-LDHs and γ-MnOOH, the obtained core-shell structure catalyst exhibited excellent oxygen evolution reaction ...
The development of bifunctional electrocatalysts with high performance for both hydrogen evolution r...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
Highly efficient and low-cost electrocatalysts are essential for water spitting via electrolysis in ...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Delicate design of nanostructures for oxygen‐evolution electrocatalysts is an important strategy for...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
The development of highly efficient eletrocatalysts for water electrolysis application is a rising h...
Water splitting has received more and more attention because of its huge potential to generate clean...
Electrocatalytic water splitting is a feasible technology that can produce hydrogen from renewable s...
Development of cost-effective, high-performance electrocatalysts for water splitting is the key tech...
NiOOH is considered as the most active intermediate during electrochemical oxidation reaction, howev...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
The development of bifunctional electrocatalysts with high performance for both hydrogen evolution r...
High-performance, cost-effective and stable electrocatalysts are critical for hydrogen evolution rea...
The development of bifunctional electrocatalysts with high performance for both hydrogen evolution r...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
Highly efficient and low-cost electrocatalysts are essential for water spitting via electrolysis in ...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Delicate design of nanostructures for oxygen‐evolution electrocatalysts is an important strategy for...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
Exploring efficient oxygen evolution reaction (OER) catalysts synthesized from low-cost and earth-ab...
The development of highly efficient eletrocatalysts for water electrolysis application is a rising h...
Water splitting has received more and more attention because of its huge potential to generate clean...
Electrocatalytic water splitting is a feasible technology that can produce hydrogen from renewable s...
Development of cost-effective, high-performance electrocatalysts for water splitting is the key tech...
NiOOH is considered as the most active intermediate during electrochemical oxidation reaction, howev...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
The development of bifunctional electrocatalysts with high performance for both hydrogen evolution r...
High-performance, cost-effective and stable electrocatalysts are critical for hydrogen evolution rea...
The development of bifunctional electrocatalysts with high performance for both hydrogen evolution r...
NiFe LDH (Layered Double Hydroxide) is a promising electrocatalyst for oxygen release reaction (OER)...
Highly efficient and low-cost electrocatalysts are essential for water spitting via electrolysis in ...