Cas no 7789-53-9 (Strontium bromide hexahydrate)

Strontium bromide hexahydrate (SrBr?·6H?O) is a crystalline inorganic compound composed of strontium cations and bromide anions, with six water molecules of hydration. It is commonly utilized in laboratory and industrial applications due to its high solubility in water and stability under controlled conditions. The compound is particularly valued in optical and spectroscopic applications, where its transparency in the infrared region makes it suitable for specialized lenses and windows. Additionally, it serves as a precursor in the synthesis of other strontium-based compounds. Its well-defined hydration state ensures consistent performance in chemical processes, making it a reliable choice for research and manufacturing.
Strontium bromide hexahydrate structure
Strontium bromide hexahydrate structure
Product Name:Strontium bromide hexahydrate
CAS No:7789-53-9
MF:Br2H12O6Sr
MW:355.519682884216
MDL:MFCD00150361
CID:86115
PubChem ID:24867143
Update Time:2025-06-15

Strontium bromide hexahydrate Chemical and Physical Properties

Names and Identifiers

    • Strontium bromide hexahydrate
    • strontium,dibromide,hexahydrate
    • SalicylaldoxiMe
    • 7I32N2UD6W
    • strontium dibromide hexahydrate
    • STRONTIUM BROMIDE, REAGENT
    • strontium(2+) hexahydrate dibromide
    • Strontium bromide--water (1/2/6)
    • TRA0021687
    • DTXSID10999077
    • UNII-7I32N2UD6W
    • H12Br2O6Sr
    • Q27268329
    • strontium;dibromide;hexahydrate
    • AKOS015855538
    • 7789-53-9
    • DB-231853
    • STRONTIUMBROMIDEHEXAHYDRATE
    • MDL: MFCD00150361
    • Inchi: 1S/2BrH.6H2O.Sr/h2*1H;6*1H2;/q;;;;;;;;+2/p-2
    • InChI Key: FLMJUJXBFKFYOZ-UHFFFAOYSA-L
    • SMILES: [Sr+2].[Br-].[Br-].O.O.O.O.O.O

Computed Properties

  • Exact Mass: 353.80600
  • Monoisotopic Mass: 353.805678
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 6
  • Hydrogen Bond Acceptor Count: 8
  • Heavy Atom Count: 9
  • Rotatable Bond Count: 0
  • Complexity: 0
  • Covalently-Bonded Unit Count: 9
  • 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: 6

Experimental Properties

  • Color/Form: Colorless crystals or white particles. Deliquescent
  • Density: 2,386 g/cm3
  • Melting Point: 88oC
  • Boiling Point: 100 oC
  • Flash Point: °C
  • Solubility: Soluble in water (2850 g/L at 20°C).
  • Water Partition Coefficient: Soluble in water, alcohol
  • Stability/Shelf Life: Stable. Hygroscopic.
  • PSA: 55.38000
  • LogP: 1.30540
  • Merck: 14,8837
  • Sensitiveness: Hygroscopic

Strontium bromide hexahydrate Security Information

  • Symbol: GHS07
  • Signal Word:Warning
  • Hazard Statement: H315,H319,H335
  • Warning Statement: P261,P305+P351+P338
  • Hazardous Material transportation number:NONH for all modes of transport
  • WGK Germany:3
  • Hazard Category Code: 36/37/38
  • Safety Instruction: S26-S36
  • RTECS:WK8225000
  • Hazardous Material Identification: Xi
  • TSCA:Yes
  • Risk Phrases:R36/37/38
  • Storage Condition:易吸潮,密封避光保存

Strontium bromide hexahydrate Pricemore >>

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Additional information on Strontium bromide hexahydrate

Recent Advances in the Application of Strontium Bromide Hexahydrate (CAS: 7789-53-9) in Chemical and Biomedical Research

Strontium bromide hexahydrate (CAS: 7789-53-9) has garnered significant attention in recent years due to its unique chemical properties and potential applications in biomedical research. This compound, with the chemical formula SrBr?·6H?O, is a hydrated form of strontium bromide that exhibits high solubility in water and other polar solvents. Recent studies have explored its utility in various domains, including material science, pharmaceuticals, and therapeutic applications. This research brief aims to synthesize the latest findings and highlight the emerging trends associated with this compound.

One of the most notable areas of research involving strontium bromide hexahydrate is its role in the development of novel materials. A 2023 study published in the Journal of Materials Chemistry demonstrated its efficacy as a precursor for the synthesis of strontium-based nanoparticles. These nanoparticles exhibited exceptional luminescent properties, making them suitable for applications in optoelectronic devices and bioimaging. The study emphasized the compound's stability and ease of manipulation under controlled conditions, which are critical for industrial-scale production.

In the pharmaceutical sector, strontium bromide hexahydrate has been investigated for its potential therapeutic benefits. A recent preclinical study highlighted its anti-inflammatory properties, particularly in the context of bone-related disorders. Researchers observed that strontium ions released from the compound could modulate osteoclast activity, thereby reducing bone resorption in animal models of osteoporosis. These findings, published in Biomaterials Science, suggest that strontium bromide hexahydrate could serve as a promising candidate for developing next-generation bone therapeutics.

Another groundbreaking application of strontium bromide hexahydrate lies in its use as a catalyst in organic synthesis. A 2024 paper in Advanced Synthesis & Catalysis reported its effectiveness in facilitating cross-coupling reactions, which are pivotal for constructing complex organic molecules. The study attributed this catalytic activity to the Lewis acidity of strontium ions, which can activate substrates under mild conditions. This discovery opens new avenues for sustainable and cost-effective synthetic methodologies in the pharmaceutical and agrochemical industries.

Despite these advancements, challenges remain in the widespread adoption of strontium bromide hexahydrate. For instance, its hygroscopic nature necessitates stringent storage conditions to prevent degradation. Additionally, more comprehensive toxicological studies are required to assess its safety profile in biomedical applications. Future research should focus on addressing these limitations while exploring its potential in emerging fields such as regenerative medicine and drug delivery systems.

In conclusion, strontium bromide hexahydrate (CAS: 7789-53-9) represents a versatile compound with multifaceted applications in chemical and biomedical research. Its unique properties, ranging from luminescence to therapeutic potential, underscore its significance in advancing scientific and technological innovations. As research continues to unfold, this compound is poised to play a pivotal role in shaping the future of material science and medicine.

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