The rational regulation of catalysts with a well-controlled morphology and crystal structure has been demonstrated effective for optimizing the electrochemical performance. Herein, corrosion engineering was employed for the straightforward preparation of FeAl layered double hydroxide (LDH) nanosheets and Fe3O4 nanooctahedrons via the feasible modification of dealloying conditions. The FeAl-LDH nanosheets display an excellent catalytic performance for oxygen evolution reactions in 1 M KOH solution, such as low overpotentials (333 mV on glass carbon electrode and 284 mV on Ni foam at 10 mA cm−2), a small Tafel slope (36 mV dec−1), and excellent durability (24 h endurance without deactivation). The distinguished catalytic features of the FeAl-...
This paper describes the electrosynthesis, characterization and electrocatalytic properties towards ...
Electrocatalysts with three-dimensional (3D) hierarchical architectures, large surface areas, and co...
Employing a low-cost and highly efficient electrocatalyst to replace Ir-based catalysts for oxygen e...
International audienceThe development of high-performance and cost-effective hydrogen evolution reac...
Delicate design of nanostructures for oxygen‐evolution electrocatalysts is an important strategy for...
The oxygen reduction reaction (ORR) and oxygen evolution reaction (OER), namely, so-called oxygen el...
Since the oxygen evolution catalysis process is vital yet arduous in energy conversion and storage d...
Layer double hydroxide (LDH) has been widely applied to electrocatalysis, especially toward the oxyg...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
One crucial pattern to vigorously develop renewable energy is to exploit high-performance oxygen evo...
An orderly hierarchical hybrid electrode has been constructed for the oxygen evolution reaction (OER...
The electrocatalytic oxygen evolution reaction (OER) is a critical half-cell reaction for hydrogen p...
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 ...
Developing nonprecious and effective catalysts for electrochemical oxygen evolution reaction (OER) r...
This paper describes the electrosynthesis, characterization and electrocatalytic properties towards ...
Electrocatalysts with three-dimensional (3D) hierarchical architectures, large surface areas, and co...
Employing a low-cost and highly efficient electrocatalyst to replace Ir-based catalysts for oxygen e...
International audienceThe development of high-performance and cost-effective hydrogen evolution reac...
Delicate design of nanostructures for oxygen‐evolution electrocatalysts is an important strategy for...
The oxygen reduction reaction (ORR) and oxygen evolution reaction (OER), namely, so-called oxygen el...
Since the oxygen evolution catalysis process is vital yet arduous in energy conversion and storage d...
Layer double hydroxide (LDH) has been widely applied to electrocatalysis, especially toward the oxyg...
The oxygen evolution reaction (OER) is involved in various renewable energy systems, such as water‐s...
One crucial pattern to vigorously develop renewable energy is to exploit high-performance oxygen evo...
An orderly hierarchical hybrid electrode has been constructed for the oxygen evolution reaction (OER...
The electrocatalytic oxygen evolution reaction (OER) is a critical half-cell reaction for hydrogen p...
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 ...
Developing nonprecious and effective catalysts for electrochemical oxygen evolution reaction (OER) r...
This paper describes the electrosynthesis, characterization and electrocatalytic properties towards ...
Electrocatalysts with three-dimensional (3D) hierarchical architectures, large surface areas, and co...
Employing a low-cost and highly efficient electrocatalyst to replace Ir-based catalysts for oxygen e...