Cas no 19574-12-0 (bicyclo[3.2.2]nonane-6-carboxylic acid)
bicyclo[3.2.2]nonane-6-carboxylic acid Chemical and Physical Properties
Names and Identifiers
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- bicyclo[3.2.2]nonane-6-carboxylic acid
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- Inchi: 1S/C10H16O2/c11-10(12)9-6-7-2-1-3-8(9)5-4-7/h7-9H,1-6H2,(H,11,12)
- InChI Key: RUBJIIMMNAVITE-UHFFFAOYSA-N
- SMILES: C12CCC(C(C(O)=O)C1)CCC2
bicyclo[3.2.2]nonane-6-carboxylic acid Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Enamine | EN300-7846942-0.05g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 0.05g |
$232.0 | 2025-03-21 | |
| Enamine | EN300-7846942-0.1g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 0.1g |
$347.0 | 2025-03-21 | |
| Enamine | EN300-7846942-0.25g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 0.25g |
$494.0 | 2025-03-21 | |
| Enamine | EN300-7846942-0.5g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 0.5g |
$780.0 | 2025-03-21 | |
| Enamine | EN300-7846942-1.0g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 1.0g |
$999.0 | 2025-03-21 | |
| Enamine | EN300-7846942-2.5g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 2.5g |
$1959.0 | 2025-03-21 | |
| Enamine | EN300-7846942-5.0g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 5.0g |
$2900.0 | 2025-03-21 | |
| Enamine | EN300-7846942-10.0g |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95.0% | 10.0g |
$4299.0 | 2025-03-21 | |
| Aaron | AR02853Y-50mg |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95% | 50mg |
$344.00 | 2025-02-15 | |
| Aaron | AR02853Y-100mg |
bicyclo[3.2.2]nonane-6-carboxylic acid |
19574-12-0 | 95% | 100mg |
$503.00 | 2025-02-15 |
bicyclo[3.2.2]nonane-6-carboxylic acid Related Literature
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Doug Ogrin,Laura H. van Poppel,Simon G. Bott,Andrew R. Barron Dalton Trans., 2004, 3689-3694
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Huifang Yang,Haoran Guo,Peidong Fan,Xinpan Li,Wenlu Ren,Rui Song Nanoscale, 2020,12, 7024-7034
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Haitao Li,Yu Pan,Zhizhi Wang,Shan Chen,Ruixin Guo,Jianqiu Chen RSC Adv., 2015,5, 100775-100782
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Kaiyuan Huang,Wangkang Qiu,Meilian Ou,Xiaorui Liu,Zenan Liao,Sheng Chu RSC Adv., 2020,10, 18824-18829
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Stephen P. Fletcher,Richard B. C. Jagt,Ben L. Feringa Chem. Commun., 2007, 2578-2580
Additional information on bicyclo[3.2.2]nonane-6-carboxylic acid
Exploring bicyclo[3.2.2]nonane-6-carboxylic acid (CAS No. 19574-12-0): Properties, Applications, and Innovations
Bicyclo[3.2.2]nonane-6-carboxylic acid (CAS No. 19574-12-0) is a unique bicyclic carboxylic acid that has garnered significant attention in organic chemistry and pharmaceutical research. Its distinctive bicyclic framework and carboxylic acid functional group make it a versatile building block for synthesizing complex molecules. Researchers and industries are increasingly exploring its potential in drug discovery, material science, and specialty chemicals, aligning with the growing demand for sustainable synthetic intermediates and high-performance additives.
The compound's structural rigidity, imparted by the bicyclo[3.2.2]nonane core, offers unique steric and electronic properties. This makes it valuable for designing conformationally constrained analogs in medicinal chemistry, a hot topic in the era of targeted drug delivery and precision therapeutics. Recent studies highlight its role in optimizing bioavailability and receptor binding affinity, addressing common challenges like metabolic instability—a frequent search query among pharmaceutical professionals.
In material science, bicyclo[3.2.2]nonane-6-carboxylic acid serves as a precursor for high-strength polymers and thermosetting resins. Its ability to enhance thermal stability resonates with industries seeking eco-friendly alternatives to traditional petrochemical-derived materials. This aligns with global trends like the circular economy and green chemistry, topics dominating academic and industrial discussions. Notably, its derivatization potential for UV-resistant coatings has sparked interest in renewable energy applications, such as solar panel encapsulation.
From a synthetic perspective, the compound's CAS No. 19574-12-0 is frequently searched in chemical databases, reflecting its utility in multistep organic synthesis. Its compatibility with cross-coupling reactions and stereoselective transformations makes it a favorite among synthetic chemists developing chiral auxiliaries or asymmetric catalysts. Online forums often discuss its handling under inert atmospheres, a nod to its sensitivity to oxidation—a practical consideration for lab-scale and industrial use.
Environmental and regulatory aspects further elevate its relevance. Unlike many traditional intermediates, bicyclo[3.2.2]nonane-6-carboxylic acid exhibits favorable biodegradability profiles in preliminary assessments, a critical factor given tightening REACH regulations and EPA guidelines. This positions it as a candidate for safer chemical design, a trending theme in QSAR modeling discussions. Analytical chemists also value its distinct NMR and MS fragmentation patterns, often cited in method development papers.
Looking ahead, innovations in continuous flow chemistry could revolutionize its production, addressing scalability challenges. Startups focusing on AI-driven retrosynthesis (a buzzword in 2024) are actively exploring this compound's disconnections, highlighting its role in automated molecular design. As the scientific community prioritizes atom economy and waste minimization, 19574-12-0 exemplifies how niche intermediates can drive sustainable chemical manufacturing—a narrative increasingly visible in investor pitch decks and grant proposals.
In conclusion, bicyclo[3.2.2]nonane-6-carboxylic acid (CAS No. 19574-12-0) bridges fundamental research and industrial applications. Its multifaceted utility—from enabling next-gen therapeutics to advancing green materials—ensures its place in the evolving landscape of specialty chemicals. For researchers querying "bicyclic carboxylic acid applications" or "CAS 19574-12-0 suppliers", this compound represents both a tool and a testament to chemistry's role in solving modern challenges.
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