Cas no 1260830-30-5 ((2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL)
(2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL Chemical and Physical Properties
Names and Identifiers
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- (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL
- Benzenemethanol, 2,4,5-trifluoro-3-methoxy-
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- MDL: MFCD08669403
- Inchi: 1S/C8H7F3O2/c1-13-8-6(10)4(3-12)2-5(9)7(8)11/h2,12H,3H2,1H3
- InChI Key: GQHZHNFJOJOLIT-UHFFFAOYSA-N
- SMILES: C1(CO)=CC(F)=C(F)C(OC)=C1F
(2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Enamine | EN300-8083291-1g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95% | 1g |
$614.0 | 2023-09-02 | |
| Enamine | EN300-8083291-5g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95% | 5g |
$1779.0 | 2023-09-02 | |
| Enamine | EN300-8083291-10g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95% | 10g |
$2638.0 | 2023-09-02 | |
| Enamine | EN300-8083291-0.05g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 0.05g |
$135.0 | 2025-02-21 | |
| Enamine | EN300-8083291-0.1g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 0.1g |
$202.0 | 2025-02-21 | |
| Enamine | EN300-8083291-0.25g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 0.25g |
$289.0 | 2025-02-21 | |
| Enamine | EN300-8083291-0.5g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 0.5g |
$480.0 | 2025-02-21 | |
| Enamine | EN300-8083291-1.0g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 1.0g |
$614.0 | 2025-02-21 | |
| Enamine | EN300-8083291-2.5g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 2.5g |
$1202.0 | 2025-02-21 | |
| Enamine | EN300-8083291-5.0g |
(2,4,5-trifluoro-3-methoxyphenyl)methanol |
1260830-30-5 | 95.0% | 5.0g |
$1779.0 | 2025-02-21 |
(2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL Related Literature
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Huading Zhang,Lee R. Moore,Maciej Zborowski,P. Stephen Williams,Shlomo Margel,Jeffrey J. Chalmers Analyst, 2005,130, 514-527
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Tao Wang,Yangyang Liu,Yue Deng,Hongbo Fu,Jianmin Chen Environ. Sci.: Nano, 2018,5, 1821-1833
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Jason Y. C. Lim,Yong Yu,Guorui Jin,Kai Li,Yi Lu,Jianping Xie Nanoscale Adv., 2020,2, 3921-3932
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Gang Pan,Yi-jie Bao,Jie Xu,Tao Liu,Cheng Liu,Yan-yan Qiu,Xiao-jing Shi,Hui Yu,Ting-ting Jia,Xia Yuan,Ze-ting Yuan,Yi-jun Cao RSC Adv., 2016,6, 42109-42119
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Fereshteh Bayat Environ. Sci.: Nano, 2021,8, 367-389
Additional information on (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL
Comprehensive Overview of (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL (CAS No. 1260830-30-5)
(2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL (CAS No. 1260830-30-5) is a fluorinated aromatic alcohol with significant applications in pharmaceutical and agrochemical research. This compound, characterized by its trifluoromethyl and methoxy functional groups, has garnered attention due to its unique physicochemical properties and versatility in synthetic chemistry. Researchers and industries are increasingly exploring its potential as a building block for advanced materials and bioactive molecules, aligning with the growing demand for fluorinated compounds in drug discovery.
The structural features of (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL make it a valuable intermediate in the synthesis of heterocyclic compounds and small-molecule inhibitors. Its electron-withdrawing trifluoromethyl group enhances metabolic stability, a critical factor in the development of next-generation therapeutics. Recent studies highlight its role in optimizing ADME properties (Absorption, Distribution, Metabolism, and Excretion), a hot topic in medicinal chemistry forums and AI-driven drug design platforms.
In the context of green chemistry, (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL is being investigated for its compatibility with sustainable synthesis methods. With the rise of environmentally friendly protocols, this compound’s potential for catalytic transformations and solvent-free reactions is a frequent search query among chemists. Its stability under mild conditions also makes it a candidate for flow chemistry applications, a trending area in process optimization.
From an analytical perspective, the compound’s HPLC purity and spectroscopic data (NMR, MS) are widely discussed in technical literature. Laboratories prioritize high-purity intermediates like this for structure-activity relationship (SAR) studies, reflecting the industry’s focus on precision synthesis. The CAS No. 1260830-30-5 is often cross-referenced in patent databases, underscoring its relevance in intellectual property related to specialty chemicals.
Emerging applications of (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL include its use in material science, particularly in designing fluorinated polymers with enhanced thermal and chemical resistance. This aligns with searches for high-performance materials in electronics and coatings. Additionally, its role in ligand design for catalysis is a niche yet growing area, often explored in computational chemistry models.
To address common queries: The compound’s shelf life and storage conditions (typically under inert atmosphere) are frequently searched, along with its scalability in industrial settings. Regulatory-compliant safety data (non-hazardous classification) further boosts its adoption in GMP-compliant facilities. As AI-powered platforms like retrosynthesis tools gain traction, 1260830-30-5 is increasingly indexed as a key intermediate in predictive algorithms.
In summary, (2,4,5-TRIFLUORO-3-METHOXYPHENYL)METHANOL (CAS No. 1260830-30-5) exemplifies the intersection of innovation and practical utility in modern chemistry. Its multidisciplinary applications—from life sciences to advanced materials—ensure its prominence in both academic and industrial research, resonating with current trends in sustainable and data-driven chemical development.
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