“…Specifically, the dynamic hydrogen bubbling technique (DHBT) is considered a promising method for electrodeposition due to being simple and fast, producing high surface area by developing a porous structure, and being controllable. 39–41…”
Section: Introductionmentioning
confidence: 99%
“…Specically, the dynamic hydrogen bubbling technique (DHBT) is considered a promising method for electrodeposition due to being simple and fast, producing high surface area by developing a porous structure, and being controllable. [39][40][41] Therefore, the current research focuses on the preparation of non-precious catalysts on the surface of supporting materials with characteristic properties. Interestingly, seeking supporting materials with characteristic properties from waste materials is still challenging.…”
Functionalized exfoliated graphite rods are a promising catalyst support for Ni(OH)2 nanoparticles, enhancing the electrocatalytic activity and stability towards glycerol oxidation reaction.
“…Specifically, the dynamic hydrogen bubbling technique (DHBT) is considered a promising method for electrodeposition due to being simple and fast, producing high surface area by developing a porous structure, and being controllable. 39–41…”
Section: Introductionmentioning
confidence: 99%
“…Specically, the dynamic hydrogen bubbling technique (DHBT) is considered a promising method for electrodeposition due to being simple and fast, producing high surface area by developing a porous structure, and being controllable. [39][40][41] Therefore, the current research focuses on the preparation of non-precious catalysts on the surface of supporting materials with characteristic properties. Interestingly, seeking supporting materials with characteristic properties from waste materials is still challenging.…”
Functionalized exfoliated graphite rods are a promising catalyst support for Ni(OH)2 nanoparticles, enhancing the electrocatalytic activity and stability towards glycerol oxidation reaction.
“…A recent work confirms that the presence of oxygenated Ni species is the key to stabilizing the metal/oxygenated junctions in alkaline solutions. 22 However, these metal oxides are still at risk of becoming hydrogenated under longer operation times, and they will gradually suffer a performance decay.…”
Durable Cu/NiFe(OH)x electrocatalyst are designed for hydrogen evolution reaction in alkaline media. The in-situ generated Cu nanodendrites protect the NiFe(OH)x from being hydrogenated, endorsing it a >1000 h lifetime for...
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