Cas no 13455-34-0 (Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI))

Sulfuric acid, cobalt(2+) salt (1:1), monohydrate (CoSO?·H?O) is a hydrated cobalt sulfate compound with applications in industrial and laboratory settings. It serves as a precursor for cobalt-based catalysts, electroplating solutions, and pigment production. The monohydrate form offers improved stability and solubility compared to anhydrous variants, facilitating precise formulation in aqueous systems. Its consistent purity and well-defined stoichiometry make it suitable for analytical standards and chemical synthesis. The compound is also utilized in battery research and as a nutrient in animal feed supplements. Proper handling is required due to its hygroscopic nature and potential toxicity. Storage in a dry, controlled environment is recommended to maintain integrity.
Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) structure
13455-34-0 structure
Product Name:Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI)
CAS No:13455-34-0
MF:CoH2O5S
MW:173.011080265045
CID:138014
PubChem ID:16210984
Update Time:2025-10-29

Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) Chemical and Physical Properties

Names and Identifiers

    • Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI)
    • COBALT SULFATE MONOHYDRATE
    • COBALT(II) SULFATE HYDRATE
    • COBALT SULFATE HYDRATE
    • COBALTOUS SULFATE HYDRATE
    • COBALTOUS SULFATE MONOHYDRATE
    • Sulfuric acid, cobalt(2+) salt (1:1), monohydrate
    • COBALT(II) SULFATE
    • cobalt:sulfuric acid:hydrate
    • NS00134279
    • cobalt sulphate monohydrate
    • MFCD00149657
    • Cobalt(ii)sulfate hydrate
    • Cobalt(II) sulfate hydrate, Reagent, Co 20.8%
    • H2CoO5S
    • UNII-5ZQA69KLC0
    • Q27263112
    • 13455-34-0
    • COBALT(II) SULFATE 1-HYDRATE
    • Cobalt(II)sulfatexhydrate
    • DTXSID001026257
    • Cobalt mesosulfate (CoH2SO5)
    • Cobalt sulfate (CoSO4) monohydrate
    • 5ZQA69KLC0
    • Cobalt(II) sulfate xhydrate
    • cobalt(2+);sulfate;hydrate
    • COBALT(II) SULFATE MONOHYDRATE
    • AKOS015910276
    • 60459-08-7
    • BGORGFZEVHFAQU-UHFFFAOYSA-L
    • Inchi: 1S/Co.H2O4S.H2O/c;1-5(2,3)4;/h;(H2,1,2,3,4);1H2/q+2;;/p-2
    • InChI Key: BGORGFZEVHFAQU-UHFFFAOYSA-L
    • SMILES: [Co+2].S(=O)(=O)([O-])[O-].O

Computed Properties

  • Exact Mass: 172.89546
  • Monoisotopic Mass: 172.895488g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 3
  • Hydrogen Bond Acceptor Count: 5
  • Heavy Atom Count: 7
  • Rotatable Bond Count: 0
  • Complexity: 62.2
  • 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
  • Topological Polar Surface Area: 89.6?2

Experimental Properties

  • Density: 2.03?g/mL?at 25?°C(lit.)
  • PSA: 111.76

Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) Security Information

  • Hazardous Material transportation number:UN 3077 9/PG 3
  • WGK Germany:2
  • Hazard Category Code: 49-22-42/43-50/53
  • Safety Instruction: 53-22-45-60-61
  • RTECS:GG3200000
  • Hazardous Material Identification: T N
  • Risk Phrases:R49
  • Safety Term:S53-22-45-60-61

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Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) Suppliers

Tiancheng Chemical (Jiangsu) Co., Ltd
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(CAS:13455-34-0)一水硫酸鈷
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Quantity:25KG,200KG,1000KG
Purity:99%
Pricing Information Last Updated:Friday, 20 June 2025 12:49
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Additional information on Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI)

Introduction to Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) and Its Applications in Modern Chemistry

CAS No. 13455-34-0 corresponds to Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI), a compound of significant interest in the field of inorganic and coordination chemistry. This coordination salt, featuring a 1:1 ratio between sulfuric acid and cobalt(II) ions, exhibits unique structural and functional properties that have garnered attention in both academic research and industrial applications.

The compound is characterized by its monohydrate form, which imparts distinct solubility and stability characteristics. The presence of cobalt(II) ions in the coordination sphere with sulfuric acid anions results in a complex that is not only chemically stable but also possesses catalytic activity. This has made it a valuable reagent in various chemical transformations, particularly in organic synthesis and material science.

In recent years, the study of transition metal complexes has seen remarkable advancements, with cobalt-based compounds emerging as pivotal players in catalytic systems. The Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) has been extensively investigated for its role in facilitating various redox reactions. These reactions are crucial in the synthesis of fine chemicals and pharmaceuticals, where precise control over oxidation states is essential.

One of the most compelling aspects of this compound is its ability to act as a homogeneous catalyst. Homogeneous catalysts are highly valued for their efficiency and selectivity, which are critical factors in modern chemical processes. The cobalt(II) center in Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) can coordinate with various substrates, facilitating reactions such as hydrogenation, oxidation, and coupling processes. These reactions are fundamental to the production of high-value chemicals used in pharmaceuticals, agrochemicals, and polymers.

Recent research has highlighted the potential of this compound in sustainable chemistry. The ability to recycle and reuse catalysts without significant loss of activity is a key consideration in green chemistry initiatives. Studies have demonstrated that Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) can be recovered from reaction mixtures and reused multiple times without a substantial decline in performance. This aligns with the growing emphasis on reducing waste and energy consumption in chemical manufacturing.

The structural properties of Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) also make it an interesting material for nanotechnology applications. Transition metal complexes often exhibit size-dependent properties when synthesized at the nanoscale. Researchers have explored the use of this compound as a precursor for cobalt nanoparticles, which have potential applications in magnetic materials, catalysts, and even biosensors. The monohydrate form contributes to the stability of these nanoparticles, ensuring their long-term viability.

In the realm of pharmaceuticals, the coordination chemistry of cobalt has opened new avenues for drug development. While cobalt-based drugs are not as prevalent as those derived from other metals like iron or platinum, there is growing interest in their therapeutic potential. The ability of Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) to form stable complexes with biologically relevant molecules has led to investigations into its role as a prodrug or a cofactor for enzymatic reactions. These studies are still in their early stages but hold promise for future medical applications.

The synthesis of Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) is another area where advancements have been made. Traditional methods often involve harsh conditions that can generate byproducts or require extensive purification steps. However, newer synthetic routes have been developed that improve yield and purity while reducing environmental impact. These methods often involve mild reaction conditions and the use of water as a solvent, aligning with principles of green chemistry.

The spectroscopic properties of this compound have also been thoroughly studied. Techniques such as nuclear magnetic resonance (NMR), X-ray diffraction (XRD), and electron paramagnetic resonance (EPR) have provided insights into its structure and dynamics. These studies not only enhance our fundamental understanding of coordination chemistry but also aid in optimizing its applications as a catalyst or material.

The industrial relevance of Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) cannot be overstated. Its versatility makes it suitable for a wide range of applications beyond catalysis and nanotechnology. For instance, it has been explored as an additive in battery technologies due to its ability to stabilize electrode materials. Additionally, its role in corrosion inhibition has been investigated, where it can form protective layers on metal surfaces.

Future research directions for this compound include exploring its behavior under extreme conditions such as high temperatures or pressures. Understanding how it functions under such conditions could lead to novel applications that are not feasible under standard conditions. Furthermore, computational studies using density functional theory (DFT) are being employed to model its reactivity and mechanism of action at a molecular level.

In conclusion,Sulfuric acid,cobalt(2+) salt (1:1), monohydrate (8CI,9CI) is a multifaceted compound with significant potential across multiple domains of chemistry and materials science. Its unique properties make it an invaluable tool for researchers seeking innovative solutions to complex problems. As our understanding of its behavior continues to evolve through ongoing research,CAS No 13455-34-0 will undoubtedly remain at the forefront of scientific discovery.

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Tiancheng Chemical (Jiangsu) Co., Ltd
(CAS:13455-34-0)一水硫酸鈷
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