Cas no 14459-95-1 (Potassium Ferrocyanide Trihydrate)

Potassium Ferrocyanide Trihydrate (K?[Fe(CN)?]·3H?O) is a hydrated crystalline compound widely used in industrial and laboratory applications. It serves as a key precursor in the production of pigments, dyes, and anticaking agents for food-grade salts (where permitted). The compound exhibits high stability and solubility in water, facilitating its use in electroplating, metal treatment, and analytical chemistry. Its ability to form stable complexes with metal ions makes it valuable in processes such as wastewater treatment and ore extraction. The trihydrate form ensures consistent handling and storage properties. Strict regulatory compliance is required due to its cyanide content, though it is considered low-toxicity when properly managed.
Potassium Ferrocyanide Trihydrate structure
14459-95-1 structure
Product Name:Potassium Ferrocyanide Trihydrate
CAS No:14459-95-1
MF:K4Fe.(CN)6.(H2O)3
MW:422.36
MDL:MFCD00167023
CID:49802
Update Time:2025-05-23

Potassium Ferrocyanide Trihydrate Chemical and Physical Properties

Names and Identifiers

    • Potassium hexacyanoferrate(II) trihydrate
    • FERROCYANPOTASSIUM TRIHYDRATE
    • POTASSIUM FERROCYANIDE
    • POTASSIUM FERROCYANIDE(+2)TRIHYDRATE
    • POTASSIUM FERROCYANIDE 3H2O
    • POTASSIUM FERROCYANIDE 3-HYDRATE
    • POTASSIUM FERROCYANIDE(II) HYDRATE
    • POTASSIUM FERROCYANIDE(II) TRIHYDRATE
    • POTASSIUM FERROCYANIDE TRIHYDRATE
    • POTASSIUM FERROCYANIDE TRIHYRATE
    • POTASSIUM HEXACYANOFERRATE(+2)TRIHYDRATE
    • POTASSIUM HEXACYANOFERRATE(II)
    • POTASSIUM HEXACYANOFERRATE(II)-3-HYDRATE
    • POTASSIUM PRUSSIATE, YELLOW
    • YELLOW PRUSSIATE OF POTASH
    • YELLOW PRUSSIATE TRIHYDRATE
    • Potassiumferrocyanide,trihydr
    • Potassiumhexacyanoferratetrihydrate
    • POTASSIUM HEXACYANOFERRATE(II)-3-HYDRATE PURE
    • POTASSIUM HEXACYANOFERRATE(II) TRIHYDRATE, REAGENTPLUS TM, &amp
    • amp
    • Potassium ferrocyani
    • PotassiumFerrocyanideAr
    • Yellow prussiate
    • Potassium hexacyanoferrate(II) trihyrate
    • Potassium hexacyanoferrate(II) trihydrate,99.5%
    • Potassium Ferrocyanide Trihydrate
    • MDL: MFCD00167023
    • Inchi: InChI=1S/6CN.Fe.4K.3H2O/c6*1-2;;;;;;;;/h;;;;;;;;;;;3*1H2/q6*-1;+2;4*+1;;;
    • InChI Key: NRYOVBQTVIWDNU-UHFFFAOYSA-N
    • SMILES: [Fe-4](C#N)(C#N)(C#N)(C#N)(C#N)C#N.[K+].[K+].[K+].[K+].O.O.O

Computed Properties

  • Exact Mass: 421.84000
  • Monoisotopic Mass: 421.839908
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 3
  • Hydrogen Bond Acceptor Count: 15
  • Heavy Atom Count: 20
  • Rotatable Bond Count: 0
  • Complexity: 10
  • Covalently-Bonded Unit Count: 14
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 146
  • Surface Charge: 0
  • Topological Polar Surface Area: 146

Experimental Properties

  • Color/Form: Citric yellow monoclinic columnar crystals or powders
  • Density: 1.85
  • Melting Point: 70?°C (lit.)
  • Boiling Point: 25.7°C at 760 mmHg
  • Flash Point: °C
  • PH: 9.5 (100g/l, H2O, 20℃)(anhydrous substance)
  • Solubility: H2O: 0.5?M at?20?°C, clear, yellow
  • Water Partition Coefficient: 270 g/L (12 oC)
  • Stability/Shelf Life: Stable. Incompatible with oxidizing agents, stong acids (may generate very toxic HCN). Not combustible.
  • PSA: 170.43000
  • LogP: -0.09472
  • Solubility: Soluble in water, insoluble in ethanol, ether, methyl acetate and liquid ammonia
  • Sensitiveness: Sensitive to light and humidity
  • Merck: 14,7631

Potassium Ferrocyanide Trihydrate Security Information

  • Hazard Statement: H412
  • Warning Statement: P273
  • Hazardous Material transportation number:1588
  • WGK Germany:2
  • Hazard Category Code: 32-52/53
  • Safety Instruction: S22-S24/25
  • FLUKA BRAND F CODES:8
  • RTECS:LJ9219000
  • Hazardous Material Identification: Xn
  • TSCA:Yes
  • Risk Phrases:R32
  • Storage Condition:Store in cold storage.

Potassium Ferrocyanide Trihydrate Customs Data

  • HS CODE:28372000
  • Customs Data:

    China Customs Code:

    28372000

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Additional information on Potassium Ferrocyanide Trihydrate

Potassium Ferrocyanide Trihydrate: A Comprehensive Overview

Potassium ferrocyanide trihydrate, also known by its CAS number 14459-95-1, is a compound that has garnered significant attention in various scientific and industrial applications. This compound, with the chemical formula K4[Fe(CN)6]·3H2O, is a hydrated salt of potassium ferrocyanide. Its unique properties, including its ability to act as a reducing agent and its role in catalysis, have made it a subject of extensive research in recent years.

The ferrocyanide ion ([Fe(CN)6]4-) is the central moiety of this compound, and its interaction with the potassium cation (K+) plays a crucial role in determining the physical and chemical properties of potassium ferrocyanide trihydrate. Recent studies have highlighted the importance of understanding the hydration dynamics of this compound, particularly in aqueous solutions, which can influence its stability and reactivity.

One of the most notable applications of potassium ferrocyanide trihydrate is in the field of electrochemistry. Researchers have explored its potential as an electrode material due to its high redox activity and stability under various operating conditions. For instance, a study published in 2023 demonstrated that potassium ferrocyanide trihydrate can serve as an effective cathode material in sodium-ion batteries, offering improved energy density and cycle life compared to traditional materials.

In addition to its electrochemical applications, potassium ferrocyanide trihydrate has found utility in catalysis. The compound's ability to act as a heterogeneous catalyst has been leveraged in various organic transformations, including the reduction of nitro compounds and the synthesis of heterocyclic compounds. Recent advancements have focused on modifying the surface properties of potassium ferrocyanide trihydrate to enhance its catalytic efficiency and selectivity.

The synthesis of potassium ferrocyanide trihydrate is typically achieved through a combination of precipitation and crystallization techniques. The process involves the reaction of iron(II) salts with cyanide sources in the presence of potassium ions, followed by careful control of pH and temperature to ensure optimal crystal formation. Researchers have recently investigated green chemistry approaches to synthesize this compound, aiming to minimize environmental impact while maintaining product quality.

Potassium ferrocyanide trihydrate also exhibits interesting magnetic properties due to the presence of unpaired electrons in the iron(II) center. This has led to its exploration in magnetic materials research, particularly in the development of spintronic devices. Studies have shown that the magnetic behavior of this compound can be tuned by varying factors such as hydration state and doping with other metal ions.

In terms of environmental applications, potassium ferrocyanide trihydrate has been studied for its potential in water treatment processes. The compound's ability to adsorb heavy metal ions from aqueous solutions has been well-documented, making it a promising candidate for remediation technologies. Recent research has focused on enhancing this adsorption capacity through surface modification techniques such as functionalization with graphene oxide or polymer coatings.

The safety and handling considerations for potassium ferrocyanide trihydrate are also worth noting. While it is not classified as a hazardous material under normal conditions, proper precautions should be taken during synthesis and handling to avoid exposure to dust or prolonged contact with skin or eyes.

In conclusion, potassium ferrocyanide trihydrate (CAS No: 14459-95-1) is a versatile compound with a wide range of applications across multiple disciplines. Its unique chemical properties, coupled with ongoing advancements in synthesis and application techniques, continue to position it as an important material in both academic research and industrial processes.

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