Electrosynthesis of a Nickel-Based Conductive Metal-Organic Framework with Controlled Morphology for Enhanced Capacitance
Stodolka M., Choi J.Y., Fang X. et al. · ACS Materials Letters · 2024
Reported here: Nickel foam substrate/control
This support, electrode or control was extracted alongside the cMOF evidence. It is retained for context and searchable under “All extracted records”, but excluded from the default research-material ranking.
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2 papers
Stodolka M., Choi J.Y., Fang X. et al. · ACS Materials Letters · 2024
Reported here: Nickel foam substrate/control
Duan J., Chen S., Zhao C. · Nature Communications · 2017
Reported here: Nickel foam substrate/control
No linked paper matches these filters.
Raw names, formulas and structural assignments remain separate; no consensus value is inferred.
| Paper and reported name | Formula and components | Structure context | Source |
|---|---|---|---|
| Nickel foam substrate/control2024 · Electrosynthesis of a Nickel-Based Conductive Metal-Organic Framework with Controlled Morphology for Enhanced Capacitance | Ni foamMetallic nickel foam; serves as anode/current collector and electrochemical blank. | unknown · UnknownPorous conductive nickel substrate used as working electrode/anode and blank control. | S2 · Materials and Instruments |
| Nickel foam substrate/control2017 · Ultrathin metal-organic framework array for efficient electrocatalytic water splitting | NiMetallic nickel substrate. · None. | unknown · UnknownMacroporous nickel foam substrate, also tested as a no-MOF control. | S1 · Supplementary Methods; Chemicals |