Plasma‐Engraved Lattice‐Matched NiO/NiFe2O4 Heterostructure with Ample Oxygen Vacancies for Efficient Water Electrolysis and Zn‐Air Batteries
Kai Zeng,
Hongwei Tao,
Yijia Zhaoshi
et al.
Abstract:Heterogeneous interface and defect engineering offer effective pathways to accelerate oxygen evolution reaction (OER) charge transfer kinetics and motivate optimal intrinsic catalytic activity. Herein, we report the lattice‐matched NiO/NiFe2O4 heterostructure with ample oxygen vacancies (Vo‐NiO/NiFe2O4) induced by a feasible hydrothermal followed by calcination and plasma‐engraving assistant technique, which shows the unique porous microflower arrangement of intertwined nanosheets. Benefitting from the synerge… Show more
Rechargeable zinc-air battery (ZAB) and electrocatalytic water splitting are two important energy conversion technologies. Although ZAB acted as power supply drive the water splitting device can realize the self-powered hydrolysis...
Rechargeable zinc-air battery (ZAB) and electrocatalytic water splitting are two important energy conversion technologies. Although ZAB acted as power supply drive the water splitting device can realize the self-powered hydrolysis...
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