Cas no 22306-37-2 (Bismuth acetate)
Bismuth acetate Chemical and Physical Properties
Names and Identifiers
-
- Bismuth(III) acetate
- bismuth triacetate
- Bismuthacetate
- Bismuth Acetate 99.
- BISMUTH SUBACETATE
- Triacetoxybismuthine
- Bismuthacetate (7CI)
- Bismuth acetate (Bi(C2H3O2)3)
- Bismuth(3+)acetate
- Bismuth(3+) acetate
- BISMUTH ACETATE
- 8AJA86Y692
- Acetic acid, bismuth(3+) salt
- Bismuth(III); acetate
- Trisacetic acid bismuth salt
- WKLWZEWIYUTZNJ-UHFFFAOYSA-K
- bismuth(3+) ion tris(acetate ion)
- Acetic acid,bismuth(3+) salt (8CI,9CI)
- EINECS 244-904-5
- 22306-37-2
- EINECS 249-426-0
- HSDB 2186
- bismuth;triacetate
- 29094-03-9
- AKOS015915836
- UNII-8AJA86Y692
- NSC 370498
- C6H9BiO6
- DTXSID101043458
- D70195
- Acetic acid, bismuth salt
- bismuth(iii)acetate
- FT-0725987
- bismuth(3+) tris(acetate ion)
- Bismuth acetate
-
- MDL: MFCD00015629
- Inchi: 1S/3C2H4O2.Bi/c3*1-2(3)4;/h3*1H3,(H,3,4);/q;;;+3/p-3
- InChI Key: WKLWZEWIYUTZNJ-UHFFFAOYSA-K
- SMILES: [Bi+3].[O-]C(C)=O.[O-]C(C)=O.[O-]C(C)=O
Computed Properties
- Exact Mass: 269.00200
- Monoisotopic Mass: 386.020296
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 6
- Heavy Atom Count: 13
- Rotatable Bond Count: 0
- Complexity: 25.5
- Covalently-Bonded Unit Count: 4
- 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: 120
Experimental Properties
- Color/Form: White scaly crystals. 2. density (g/ml, 25/4 ℃)
- Boiling Point: 117.1 °C at 760 mmHg
- Flash Point: 40 °C
- Water Partition Coefficient: Soluble in water.
- PSA: 37.30000
- LogP: 0.09090
- Sensitiveness: Hygroscopic
Bismuth acetate Security Information
- Hazardous Material transportation number:NONH for all modes of transport
- WGK Germany:3
- Hazard Category Code: R36/37/38: irritating to eyes, respiratory tract and skin
- Safety Instruction: S26; S36
- TSCA:No
- Risk Phrases:R36/37/38
Bismuth acetate Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | B303105-10g |
Bismuth acetate |
22306-37-2 | 99.9% | 10g |
¥647.90 | 2023-09-04 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | B303105-5g |
Bismuth acetate |
22306-37-2 | 99.9% | 5g |
¥329.90 | 2023-09-04 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | B303105-1g |
Bismuth acetate |
22306-37-2 | 99.9% | 1g |
¥107.90 | 2023-09-04 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | B303105-50g |
Bismuth acetate |
22306-37-2 | 99.9% | 50g |
¥2037.90 | 2023-09-04 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | B303104-2g |
Bismuth(III) acetate |
22306-37-2 | ≥99.99 % | 2g |
¥295.00 | 2021-05-25 | |
| SHANG HAI A LA DING SHENG HUA KE JI GU FEN Co., Ltd. | B303104-10g |
Bismuth acetate |
22306-37-2 | ≥99.99 % | 10g |
¥871.90 | 2023-09-04 | |
| A FA AI SHA , SAI MO FEI SHI ER KE JI QI XIA GONG SI | 11846-10g |
Bismuth(III) acetate, 99.999% (metals basis) |
22306-37-2 | 99.999% | 10g |
¥1445.00 | 2023-04-13 | |
| A FA AI SHA , SAI MO FEI SHI ER KE JI QI XIA GONG SI | 11846-50g |
Bismuth(III) acetate, 99.999% (metals basis) |
22306-37-2 | 99.999% | 50g |
¥7246.00 | 2023-04-13 | |
| A FA AI SHA , SAI MO FEI SHI ER KE JI QI XIA GONG SI | 17574-50g |
Bismuth(III) acetate, 99% |
22306-37-2 | 99% | 50g |
¥1725.00 | 2023-04-13 | |
| A FA AI SHA , SAI MO FEI SHI ER KE JI QI XIA GONG SI | 17574-250g |
Bismuth(III) acetate, 99% |
22306-37-2 | 99% | 250g |
¥7876.00 | 2023-04-13 |
Bismuth acetate Suppliers
Bismuth acetate Related Literature
-
Jason M. Bothwell,Scott W. Krabbe,Ram S. Mohan Chem. Soc. Rev. 2011 40 4649
Additional information on Bismuth acetate
Comprehensive Overview of Bismuth Acetate (CAS No. 22306-37-2): Properties, Applications, and Industry Insights
Bismuth acetate (CAS No. 22306-37-2) is an organometallic compound widely recognized for its unique chemical properties and versatile applications in industrial and research settings. As a derivative of bismuth, this compound has garnered significant attention due to the growing demand for heavy-metal-free alternatives in catalysis, pharmaceuticals, and material science. Its molecular formula, C6H9BiO6, reflects a structure combining bismuth with acetate ligands, offering distinct solubility and reactivity characteristics.
In recent years, the surge in green chemistry initiatives has propelled interest in bismuth-based compounds like bismuth acetate, as they are often less toxic compared to traditional heavy metals such as lead or cadmium. Researchers frequently search for "bismuth acetate solubility" or "bismuth acetate uses in organic synthesis," highlighting its role as a catalyst in cross-coupling reactions and esterification processes. Its stability under moderate temperatures makes it suitable for specialty chemical manufacturing.
The compound's physical properties include a white to off-white crystalline appearance, with a decomposition point around 160–180°C. Analytical techniques like X-ray diffraction (XRD) and Fourier-transform infrared spectroscopy (FTIR) are commonly employed to characterize bismuth acetate, addressing queries such as "how to identify bismuth acetate purity." Its hygroscopic nature necessitates storage in airtight containers, a detail often emphasized in "bismuth acetate handling precautions" searches.
One of the trending applications of bismuth acetate lies in the development of nanomaterials. With the rise of nanotechnology, studies explore its use as a precursor for bismuth oxide nanoparticles, which are pivotal in photocatalysis and energy storage. This aligns with frequent searches like "bismuth acetate nanoparticle synthesis" or "bismuth-based catalysts for CO2 reduction," reflecting global interest in sustainable energy solutions.
In the pharmaceutical sector, bismuth acetate is investigated for its potential in gastrointestinal therapeutics, building on bismuth's historical use in antacids. Queries such as "bismuth acetate biological activity" underscore its antimicrobial properties against Helicobacter pylori, a bacterium linked to stomach ulcers. However, rigorous toxicological studies are ongoing to validate its safety profiles.
The compound also finds niche applications in pigments and coatings, where its low toxicity and opacity are valued. Industry forums often discuss "bismuth acetate vs. traditional metal acetates" in corrosion-resistant coatings, catering to the automotive and aerospace sectors. Additionally, its role in ceramic glazes attracts artisans seeking eco-friendly alternatives.
From a market perspective, the supply chain for bismuth acetate (CAS No. 22306-37-2) is influenced by bismuth mining trends, particularly in countries like China and Bolivia. Searches for "bismuth acetate price trends 2024" or "reliable bismuth acetate suppliers" reflect commercial interests. Manufacturers emphasize high-purity grades (>99%) to meet laboratory and industrial standards.
Environmental considerations are another hotspot. As regulations tighten on metal waste disposal, bismuth acetate is often framed as a biodegradable alternative in chemical processes. This resonates with queries like "is bismuth acetate environmentally safe," though lifecycle assessments remain critical.
In summary, bismuth acetate (CAS No. 22306-37-2) bridges traditional chemistry and modern innovation. Its adaptability across catalysis, nanomaterials, and biomedicine positions it as a compound of enduring relevance, while its alignment with sustainability goals ensures continued research and commercial exploration.
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