The 3D NiMoxCo2–xO4 (x ≤ 0.06) chestnut-like spinel oxide nanoparticles (CNSPs) grown on Ni foam were effectively prepared hydrothermally. The formation of Ni–Co CNSPs was confirmed by the XRD powder pattern, which exhibited a pure cubic spinel oxide structure without undesired phases. All ratios revealed a broadened peak representing a small crystal size (12.8–17.5 nm) range. The chestnut-like CNSPs were presented by FE-SEM, SEM, TEM, and HR-TEM analysis. The chemical composition of the products was confirmed by EDX. The 3D NiMoxCo2–xO4 (x = 0.04) CNSP electrocatalyst exhibited hydrogen evolution reaction (HER) activity as evidenced by 0.224 V overpotential, Tafel slope 61.9 mV/dec, and high stability for 36 h of chronopotentiometry techni...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
Transition-metal alloys have attracted a great deal of attention as an alternative to Pt-based catal...
NiCo2O4 nanorods (assembled with small nanoparticles) with different aspect ratios were synthesized ...
Development of a cost-effective and efficient electrocatalyst for the sluggish oxygen reduction reac...
Designing nonprecious electrocatalysts with multiple active sites and prolonged durability in an int...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...
Implementing the hierarchical structures of non-noble-metal-based electrocatalysts and modulating th...
First-row (3d) transition-metal catalysts, such as bimetallic Ni–Co, represent an emerging class of ...
Implementing the hierarchical structures of non-noble-metal-based electrocatalysts and modulating th...
Mesoporous spinel NiCo2O4 nanoparticles were synthesized via a simple hydrothermal strategy. Their p...
The design and synthesis of high-performance hydrogen evolution reaction (HER) catalysts requires an...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
Among oxides, Nickel cobaltite (NiCo2O4), with excellent electrochemical performance, has become a n...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
Transition-metal alloys have attracted a great deal of attention as an alternative to Pt-based catal...
NiCo2O4 nanorods (assembled with small nanoparticles) with different aspect ratios were synthesized ...
Development of a cost-effective and efficient electrocatalyst for the sluggish oxygen reduction reac...
Designing nonprecious electrocatalysts with multiple active sites and prolonged durability in an int...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...
Implementing the hierarchical structures of non-noble-metal-based electrocatalysts and modulating th...
First-row (3d) transition-metal catalysts, such as bimetallic Ni–Co, represent an emerging class of ...
Implementing the hierarchical structures of non-noble-metal-based electrocatalysts and modulating th...
Mesoporous spinel NiCo2O4 nanoparticles were synthesized via a simple hydrothermal strategy. Their p...
The design and synthesis of high-performance hydrogen evolution reaction (HER) catalysts requires an...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
Among oxides, Nickel cobaltite (NiCo2O4), with excellent electrochemical performance, has become a n...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
Transition-metal alloys have attracted a great deal of attention as an alternative to Pt-based catal...
NiCo2O4 nanorods (assembled with small nanoparticles) with different aspect ratios were synthesized ...