• Deutsch
Login

Open Access

  • Home
  • Search
  • Browse
  • Publish
  • FAQ

Refine

Has Fulltext

  • yes (1)

Year of publication

  • 2025 (1)

Document Type

  • Article (1)

Institute

  • Physikalische Technik, Informatik (1)

Language

  • English (1)

Author

  • Garcia, Larissa de O. (1)
  • Kalady, Mohammed F. (1)
  • Lubk, Axel (1)
  • Müller, Christian K. (1)
  • Pohlitz, Michael (1)
  • Röder, Falk (1)
  • Wolf, Daniel (1)

Is part of the Bibliography

  • yes (1)

1 search hit

  • 1 to 1
  • 10
  • 20
  • 50
  • 100
Electrodeposited Co and Ni Hexacyanoferrates: Insights into Structure and Morphology (2025)
Garcia, Larissa de O. ; Pohlitz, Michael ; Kalady, Mohammed F. ; Röder, Falk ; Lubk, Axel ; Wolf, Daniel ; Müller, Christian K.
Prussian blue (PB) and its analogs (PBAs) are interesting materials for electrochemical applications due to their tunable redox chemistry and open framework structure. In this study, hexacyanoferrates (HCF) containing iron (FeHCF), cobalt (CoHCF), and nickel (NiHCF) were synthesized via potentiostatic electrodeposition. Cyclic voltammetry revealed distinct redox behaviors. Morphological characterization (SEM, EDX) demonstrated uniform, pyramidal film growth for FeHCF and CoHCF. Otherwise, NiHCF presented a cracked film with cubic clusters on top due to residual stress. Despite this, homogeneous element distribution was found for all samples. Structural characterization (TEM and XRD) confirmed a cubic lattice crystal structure for all films, with systematic lattice contraction from Fe to Co to Ni due to decreasing atomic radius. Raman and XPS data revealed a shift toward Fe2+ dominant oxidation states and modifications in C≡N bonding, with the influence of K+ and water occupancy in the PBAs framework. These findings illustrate how metal substitution and deposition parameters can tune the structural and electrochemical properties of PBA films, presenting a strategic route to design tailored electrodes.
  • 1 to 1

OPUS4 Logo

  • Contact
  • Imprint
  • Sitelinks