Date published: 2025-9-5

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Sodium hexafluorophosphate (CAS 21324-39-0)

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Application:
Sodium hexafluorophosphate is an ion pairing agent
CAS Number:
21324-39-0
Purity:
98%
Molecular Weight:
167.95
Molecular Formula:
NaPF6
Supplemental Information:
This is classified as a Dangerous Good for transport and may be subject to additional shipping charges.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Sodium hexafluorophosphate is used to pair with ions like trace amounts of cobolt (II) in samples of water. It serves as a reagent in chemical synthesis, a catalyst for organic reactions, and a reactant in inorganic processes. Moreover, Sodium hexafluorophosphate plays a role as a buffer in biochemical assays, a catalyst in electrochemical reactions, and a stabilizer in aqueous solutions.


Sodium hexafluorophosphate (CAS 21324-39-0) References

  1. Capacity fading mechanism of tin phosphide anodes in sodium-ion batteries.  |  Mogensen, R., et al. 2018. Dalton Trans. 47: 10752-10758. PMID: 29978157
  2. Fine-Tuning the Activation Mode of an 1,3-Indandione-Based Ruthenium(II)-Cymene Half-Sandwich Complex by Variation of Its Leaving Group.  |  Mokesch, S., et al. 2019. Molecules. 24: PMID: 31252521
  3. Novel Quasi-Liquid K-Na Alloy as a Promising Dendrite-Free Anode for Rechargeable Potassium Metal Batteries.  |  Tai, Z., et al. 2021. Adv Sci (Weinh). 8: e2101866. PMID: 34173344
  4. New Route to Battery Grade NaPF6 for Na-Ion Batteries: Expanding the Accessible Concentration.  |  Ould, DMC., et al. 2021. Angew Chem Int Ed Engl. 60: 24882-24887. PMID: 34520612
  5. High sodium ionic conductivity in PEO/PVP solid polymer electrolytes with InAs nanowire fillers.  |  Devi, C., et al. 2021. Sci Rep. 11: 20180. PMID: 34642387
  6. Application of HPLC-QQQ-MS/MS and New RP-HPLC-DAD System Utilizing the Chaotropic Effect for Determination of Nicotine and Its Major Metabolites Cotinine, and trans-3'-Hydroxycotinine in Human Plasma Samples.  |  Baj, J., et al. 2022. Molecules. 27: PMID: 35163947
  7. Effect of Concentration and Temperature on the Structure and Ion Transport in Diglyme-Based Sodium-Ion Electrolyte.  |  Ardhra, S., et al. 2022. J Phys Chem B. 126: 2119-2129. PMID: 35245053
  8. Sodium Borates: Expanding the Electrolyte Selection for Sodium-Ion Batteries.  |  Ould, DMC., et al. 2022. Angew Chem Int Ed Engl. 61: e202202133. PMID: 35415950
  9. Syntheses, spectroscopic, redox, and structural properties of homoleptic Iron(III/II) dithione complexes.  |  Colston, KJ., et al. 2020. RSC Adv. 10: 38294-38303. PMID: 35517554
  10. Extending the low-temperature operation of sodium metal batteries combining linear and cyclic ether-based electrolyte solutions.  |  Wang, C., et al. 2022. Nat Commun. 13: 4934. PMID: 35995795
  11. Graphene Composite via Bacterial Cellulose Assisted Liquid Phase Exfoliation for Sodium-Ion Batteries.  |  Shu, K., et al. 2022. Polymers (Basel). 15: PMID: 36616551
  12. Thiophenium Salts as New Oxidant for Redox Polymerization under Mild- and Low-Toxicity Conditions.  |  Barrat, A., et al. 2023. Molecules. 28: PMID: 36677685
  13. Temperature Responsive Copolymers Films of Polyether and Bio-Based Polyamide Loaded with Imidazolium Ionic Liquids for Smart Packaging Applications.  |  Zampino, DC., et al. 2023. Polymers (Basel). 15: PMID: 36904387
  14. Control of stereogenic oxygen in a helically chiral oxonium ion.  |  Smith, O., et al. 2023. Nature. 615: 430-435. PMID: 36922609
  15. Plating and Stripping Calcium Metal in Potassium Hexafluorophosphate Electrolyte toward a Stable Hybrid Solid Electrolyte Interphase.  |  Chando, PA., et al. 2023. ACS Appl Energy Mater. 6: 3924-3932. PMID: 37064409

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Sodium hexafluorophosphate, 10 g

sc-236905
10 g
$44.00