Date published: 2026-4-5

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Iron(III) acetylacetonate (CAS 14024-18-1)

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Alternate Names:
Fe(acac)3
Application:
Iron(III) acetylacetonate is a useful catalyst for Grignard reactions
CAS Number:
14024-18-1
Purity:
≥98%
Molecular Weight:
353.17
Molecular Formula:
C15H21FeO6
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Iron(III) acetylacetonate is a catalyst used in Grignard reactions with acid chlorides to give ketones. MOCVD precursor for highly crystalline (Zn,Fe)Fe2O4 films and magnetic property measurements of these films. Iron(III) acetylacetonate is an organometallic compound that comprises iron and acetylacetone, an organic compound featuring a ketone group. This versatile compound finds application in polymer synthesis, and it has been the subject of research as a potential catalyst for carbon dioxide reduction.


Iron(III) acetylacetonate (CAS 14024-18-1) References

  1. Collation Efficiency of Poly(Vinyl Alcohol) and Alginate Membranes with Iron-Based Magnetic Organic/Inorganic Fillers in Pervaporative Dehydration of Ethanol.  |  Dudek, G., et al. 2020. Materials (Basel). 13: PMID: 32961950
  2. Selective Control over the Morphology and the Oxidation State of Iron Oxide Nanoparticles.  |  Escoda-Torroella, M., et al. 2021. Langmuir. 37: 35-45. PMID: 33301314
  3. Hydrogen/Halogen Exchange of Phosphines for the Rapid Formation of Cyclopolyphosphines.  |  Barrett, AN., et al. 2021. Inorg Chem. 60: 16826-16833. PMID: 34647448
  4. Supramolecular Surface Functionalization of Iron Oxide Nanoparticles with α-Cyclodextrin-Based Cationic Star Polymer for Magnetically-Enhanced Gene Delivery.  |  Li, H., et al. 2021. Pharmaceutics. 13: PMID: 34834299
  5. Carbon Dots/Iron Oxide Nanoparticles with Tuneable Composition and Properties.  |  Stachowska, JD., et al. 2022. Nanomaterials (Basel). 12: PMID: 35215002
  6. Synthesis of surface-modified iron oxide nanocrystals using supercritical carbon dioxide as the reaction field.  |  Orita, Y., et al. 2022. RSC Adv. 12: 7990-7995. PMID: 35424715
  7. Magnetic Hyperthermia Enhancement in Iron-based Materials Driven by Carbon Support Interactions.  |  Vizcaíno-Anaya, L., et al. 2022. Chemistry. 28: e202201861. PMID: 36058884
  8. The Boundary Between Volume and Surface-Driven Magnetic Properties in Spinel Iron Oxide Nanoparticles.  |  Muscas, G., et al. 2022. Nanoscale Res Lett. 17: 98. PMID: 36219264
  9. Study of Cytotoxicity and Internalization of Redox-Responsive Iron Oxide Nanoparticles on PC-3 and 4T1 Cancer Cell Lines.  |  Nizamov, TR., et al. 2022. Pharmaceutics. 15: PMID: 36678755
  10. Two-step single-reactor synthesis of oleic acid- or undecylenic acid-stabilized magnetic nanoparticles by thermal decomposition.  |  Nahorniak, M., et al. 2023. Beilstein J Nanotechnol. 14: 11-22. PMID: 36703905
  11. In vitro magnetic hyperthermia properties of angle-shaped superparamagnetic iron oxide nanoparticles synthesized by a bromide-assisted polyol method.  |  Kim, H., et al. 2023. RSC Adv. 13: 2803-2810. PMID: 36756446
  12. SiCNFe Ceramics as Soft Magnetic Material for MEMS Magnetic Devices: A Mössbauer Study.  |  Stiharu, I., et al. 2023. Micromachines (Basel). 14: PMID: 37241549
  13. Utilization of 2-nitrophenols in annulations with aryl isothiocyanates towards the synthesis of 2-aminobenzoxazoles.  |  Nguyen, TD., et al. 2023. RSC Adv. 13: 18156-18159. PMID: 37333726

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Iron(III) acetylacetonate, 25 g

sc-252913
25 g
$32.00

Iron(III) acetylacetonate, 100 g

sc-252913A
100 g
$57.00