Cas no 15578-26-4 (Tin(II) Pyrophosphate)

Tin(II) Pyrophosphate (Sn?P?O?) is an inorganic compound primarily used in ceramics, catalysis, and as a corrosion inhibitor. Its key advantages include thermal stability, low solubility in water, and compatibility with high-temperature processes, making it suitable for glaze formulations and refractory materials. The compound exhibits reducing properties due to the presence of tin in the +2 oxidation state, enabling applications in redox reactions and electrochemical systems. Its pyrophosphate structure contributes to controlled reactivity, enhancing its utility in specialized coatings and flame-retardant additives. Tin(II) Pyrophosphate is valued for its consistent purity and predictable performance in industrial and research settings.
Tin(II) Pyrophosphate structure
Tin(II) Pyrophosphate structure
Product Name:Tin(II) Pyrophosphate
CAS No:15578-26-4
MF:H4O14P4Sn2
MW:589.338402748108
MDL:MFCD00167376
CID:50141
Update Time:2026-05-14

Tin(II) Pyrophosphate Chemical and Physical Properties

Names and Identifiers

    • Tin (II) pyrophosphate
    • Stannous pyrophosphate
    • Tin(II) Pyrophosphat
    • TIN(II) PYROPHOSPHATE, hydrate
    • Tin II pyrophosphate, hydrate
    • Tin(II) Pyrophosphate
    • MDL: MFCD00167376
    • Inchi: InChI=1S/H4O7P2.2Sn/c1-8(2,3)7-9(4,5)6;;/h(H2,1,2,3)(H2,4,5,6);;/q;2*+2/p-4
    • InChI Key: GEZAUFNYMZVOFV-UHFFFAOYSA-J
    • SMILES: [O-]P(OP([O-])([O-])=O)(=O)[O-].[Sn+2].[Sn+2]

Computed Properties

  • Exact Mass: 413.71600
  • Monoisotopic Mass: 413.716
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 7
  • Heavy Atom Count: 11
  • Rotatable Bond Count: 0
  • Complexity: 124
  • Covalently-Bonded Unit Count: 3
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: nothing
  • Topological Polar Surface Area: 136A^2

Experimental Properties

  • Color/Form: White crystalline or amorphous powder
  • Density: 4,01 g/cm3
  • Melting Point: >400°C (dec.)
  • Boiling Point: °Cat760mmHg
  • Flash Point: °C
  • Water Partition Coefficient: Insoluble in water.
  • PSA: 155.23000
  • LogP: 0.17960
  • Merck: 14,8788
  • Solubility: Insoluble in water, soluble in concentrated acid, soluble in pyrophosphate

Tin(II) Pyrophosphate Security Information

  • Symbol: GHS07
  • Signal Word:Warning
  • Hazard Statement: H315-H319-H335
  • Warning Statement: P305+P351+P338
  • Hazardous Material transportation number:NONH for all modes of transport
  • WGK Germany:2
  • Hazard Category Code: 36/37/38
  • Safety Instruction: S26-S37/39
  • RTECS:JL6737500
  • Hazardous Material Identification: Xi
  • TSCA:Yes
  • Storage Condition:Keep container sealed Store in a cool \ dry condition in a well sealed container
  • Risk Phrases:R36/37/38

Tin(II) Pyrophosphate Customs Data

  • HS CODE:2835399000
  • Customs Data:

    China Customs Code:

    2835399000

Tin(II) Pyrophosphate Pricemore >>

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Tin(II) Pyrophosphate Suppliers

Tiancheng Chemical (Jiangsu) Co., Ltd
Gold Member
Audited Supplier Audited Supplier
(CAS:15578-26-4)焦磷酸亞錫
Order Number:LE1762443;LE9495
Stock Status:in Stock
Quantity:25KG,200KG,1000KG
Purity:99%
Pricing Information Last Updated:Friday, 20 June 2025 12:36
Price ($):discuss personally
Amadis Chemical Company Limited
Gold Member
Audited Supplier Audited Supplier
(CAS:15578-26-4)Tin(II) Pyrophosphate
Order Number:A1199376
Stock Status:in Stock
Quantity:500g
Purity:99%
Pricing Information Last Updated:Friday, 30 August 2024 02:39
Price ($):157.0

Additional information on Tin(II) Pyrophosphate

Recent Advances in Tin(II) Pyrophosphate (15578-26-4) Research: Applications and Innovations

Tin(II) pyrophosphate (CAS: 15578-26-4) has recently garnered significant attention in the chemical, biological, and pharmaceutical research communities due to its unique properties and potential applications. This inorganic compound, characterized by its pyrophosphate anion and tin(II) cation, has been explored for its catalytic, electrochemical, and biomedical functionalities. Recent studies have particularly focused on its role in advanced material synthesis, energy storage systems, and as a potential therapeutic agent, making it a compound of high relevance in multidisciplinary research.

A 2023 study published in Advanced Materials highlighted the use of Tin(II) pyrophosphate as a precursor for the synthesis of tin-based nanomaterials with enhanced photocatalytic properties. The research demonstrated that the compound's unique redox behavior and stability under varying pH conditions make it an ideal candidate for environmental applications, such as the degradation of organic pollutants. The study further elucidated the mechanistic pathways involved, providing a foundation for future innovations in green chemistry.

In the realm of energy storage, Tin(II) pyrophosphate has shown promise as an electrode material for lithium-ion batteries. A recent Journal of Power Sources publication (2024) reported that the compound's high theoretical capacity and structural stability contribute to improved battery performance. Researchers optimized the synthesis protocol to enhance the material's conductivity, achieving a notable increase in cyclic stability. These findings suggest potential commercial applications in next-generation energy storage devices, addressing critical challenges in renewable energy integration.

From a biomedical perspective, preliminary investigations into the antimicrobial properties of Tin(II) pyrophosphate have yielded intriguing results. A 2023 study in Biomaterials Science explored its efficacy against multidrug-resistant bacterial strains, attributing the activity to the compound's ability to disrupt microbial cell membranes. While further toxicological assessments are required, these findings open new avenues for developing alternative antimicrobial agents in an era of increasing antibiotic resistance.

The pharmaceutical industry has also taken interest in Tin(II) pyrophosphate's potential as a radiopharmaceutical carrier. Recent preclinical studies have investigated its use in targeted alpha therapy, leveraging the tin isotope's nuclear properties for cancer treatment. Early results indicate favorable biodistribution profiles, though comprehensive clinical trials remain necessary to validate these observations.

Despite these advancements, challenges persist in the large-scale application of Tin(II) pyrophosphate. Current research efforts are directed toward optimizing synthesis methods to improve yield and purity, as well as addressing potential environmental and health concerns associated with tin compounds. Collaborative initiatives between academia and industry are crucial to overcoming these hurdles and fully realizing the compound's potential across various sectors.

In conclusion, the growing body of research on Tin(II) pyrophosphate (15578-26-4) underscores its versatility and promise in addressing contemporary scientific and technological challenges. From energy storage to biomedical applications, this compound continues to inspire innovative solutions, positioning it as a key focus area in materials science and chemical biology research. Future studies will likely explore its interdisciplinary applications further, potentially unlocking novel functionalities and commercial opportunities.

Recommended suppliers
Tiancheng Chemical (Jiangsu) Co., Ltd
(CAS:15578-26-4)焦磷酸亞錫
LE1762443;LE9495
Purity:99%/99%
Quantity:25KG,200KG,1000KG/25KG,200KG,1000KG
Price ($):Inquiry/Inquiry
Email
Amadis Chemical Company Limited
(CAS:15578-26-4)Tin(II) Pyrophosphate
A1199376
Purity:99%
Quantity:500g
Price ($):157.0
Email