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کلمات کلیدی: Hydrogen evolution


موارد یافت شده: 27

1 - Tailoring the Active Sites of Nanosheet NiSe/NiSe2 Catalyst by Pulse Electrodeposition on the 3D Microporous Ni-Cu/NF Substrate for both Hydrogen and Oxygen Evolution Reactions (چکیده)
2 - Studying impact of cobalt content on electrocatalytic activity of Cu-Co-P coating with dendrite-like architectures for hydrogen production (چکیده)
3 - Recent advances in phosphide-based nanostructures by electrodeposition for hydrogen evolution reaction (چکیده)
4 - Water splitting by CoFeLDH@NiFeS nanoelectrocatalyst assisted urea electrooxidation reaction (چکیده)
5 - Bi-functional Ni-Co-P/rGO/NF flower-like structure as an electrocatalyst for hydrogen production assisted by urea oxidation reaction (چکیده)
6 - Electroless deposition of Ni-W-P films as binder-free, efficient and durable electrode for electrochemical hydrogen evolution (چکیده)
7 - Ultra-fast electrochemical preparation of Ni-Cu-Fe nano-micro dendrite as a highly active and stable electrocatalyst for overall water splitting (چکیده)
8 - Electroless deposition of Ni-W-Mo-Co-P films as a binder-free, efficient and durable electrode for electrochemical hydrogen evolution (چکیده)
9 - Electrodeposition of self-supported transition metal phosphides nanosheets as efficient hydrazine-assisted electrolytic hydrogen production catalyst (چکیده)
10 - CuS nanosheet-induced local hot spots on g-C 3 N 4 boost photocatalytic hydrogen evolution (چکیده)
11 - Binder-free P-doped Ni-Se nanostructure electrode toward highly active and stable hydrogen production in wide pH range and seawater (چکیده)
12 - Highly Active and Durable NiCoSeP Nanostructured Electrocatalyst for Large-Current-Density Hydrogen Production (چکیده)
13 - Mn-incorporated nickel selenide: an ultra-active bifunctional electrocatalyst for hydrogen evolution and urea oxidation reactions (چکیده)
14 - Superaerophobic/superhydrophilic surfaces as advanced electrocatalysts for the hydrogen evolution reaction: a comprehensive review (چکیده)
15 - Electrodeposition of nanoporous nickel selenide on graphite rod as a bifunctional electrocatalyst for hydrogen and oxygen evolution reactions (چکیده)
16 - Evaluation of the electrocatalytic activity and stability of graphene oxide nanosheets coated by Co/Ni elements toward hydrogen evolution reaction (چکیده)
17 - Facile electrochemical synthesis of Ni-Co-B film on Cu sheet for dual-electrocatalysis of hydrogen and oxygen evolution reactions (چکیده)
18 - In situelectrochemical activation as a generic strategy for promoting the electrocatalytic hydrogen evolution reaction and alcohol electro-oxidation in alkaline medium (چکیده)
19 - Electrodeposition of Ni–Co–Fe mixed sulfide ultrathin nanosheets on Ni nanocones: a low-cost, durable and high performance catalyst for electrochemical water splitting (چکیده)
20 - Pulse Electrodeposition of a Superhydrophilic and Binder-Free Ni–Fe–P Nanostructure as Highly Active and Durable Electrocatalyst for Both Hydrogen and Oxygen Evolution Reactions (چکیده)
21 - In situanodic dissolution–cathodic deposition route for preparation of the Pt–SiW11Co/SiW11Co–CNP/GC electrode: application as an efficient electrode for the hydrogen evolution reaction (چکیده)
22 - A one-pot route for the synthesis of Au@Pd/PMo12/rGO as a dual functional electrocatalyst for ethanol electro-oxidation and hydrogen evolution reaction (چکیده)
23 - Surface‐grafted lanthanoid complexes of the Keggin-type heteropolyoxometallates: a hydrogen evolution reactivity, structural and computational investigation (چکیده)
24 - Tungsten-inert gas welding electrodes as low-cost, green and pH-universal electrocatalysts for the hydrogen evolution reaction (چکیده)
25 - Photochemical and electrochemical hydrogen evolution reactivity of lanthanide-functionalized polyoxotungstates (چکیده)
26 - Investigation of the hydrogen evolution phenomenon on CaCO3 precipitation in artificial seawater (چکیده)
27 - Synergetic combination of 1D-2D g-C3N4 heterojunction nanophotocatalyst for hydrogen production via water splitting under visible light irradiation (چکیده)