Cas no 58498-60-5 (6-Methoxy-2-methyl-3-pyridinol)
6-Methoxy-2-methyl-3-pyridinol Chemical and Physical Properties
Names and Identifiers
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- 6-Methoxy-2-methyl-3-pyridinol
- Z1255447798
- 58498-60-5
- MUZUUJMRYOHILI-UHFFFAOYSA-N
- SB54974
- DB-124356
- EN300-6963461
- 6-Methoxy-2-methyl-pyridin-3-ol
- 6-methoxy-2-methylpyridin-3-ol
- F81990
- SCHEMBL586103
-
- MDL: MFCD13705341
- Inchi: 1S/C7H9NO2/c1-5-6(9)3-4-7(8-5)10-2/h3-4,9H,1-2H3
- InChI Key: MUZUUJMRYOHILI-UHFFFAOYSA-N
- SMILES: O(C)C1=CC=C(C(C)=N1)O
Computed Properties
- Exact Mass: 139.063328530g/mol
- Monoisotopic Mass: 139.063328530g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 3
- Heavy Atom Count: 10
- Rotatable Bond Count: 1
- Complexity: 108
- Covalently-Bonded Unit Count: 1
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- XLogP3: 1.2
- Topological Polar Surface Area: 42.4?2
6-Methoxy-2-methyl-3-pyridinol Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Alichem | A024000657-250mg |
3-Hydroxy-6-methoxy-2-methylpyridine |
58498-60-5 | 97% | 250mg |
$680.00 | 2023-09-01 | |
| Alichem | A024000657-500mg |
3-Hydroxy-6-methoxy-2-methylpyridine |
58498-60-5 | 97% | 500mg |
$931.00 | 2023-09-01 | |
| Alichem | A024000657-1g |
3-Hydroxy-6-methoxy-2-methylpyridine |
58498-60-5 | 97% | 1g |
$1831.20 | 2023-09-01 | |
| Chemenu | CM522430-1g |
6-Methoxy-2-methylpyridin-3-ol |
58498-60-5 | 95% | 1g |
$539 | 2022-06-10 | |
| eNovation Chemicals LLC | D337345-5g |
6-methoxy-2-methylpyridin-3-ol |
58498-60-5 | 97% | 5g |
$1500 | 2023-09-03 | |
| eNovation Chemicals LLC | D337345-10g |
6-methoxy-2-methylpyridin-3-ol |
58498-60-5 | 97% | 10g |
$2200 | 2023-09-03 | |
| eNovation Chemicals LLC | D337345-25g |
6-methoxy-2-methylpyridin-3-ol |
58498-60-5 | 97% | 25g |
$2800 | 2023-09-03 | |
| Enamine | EN300-6963461-0.05g |
6-methoxy-2-methylpyridin-3-ol |
58498-60-5 | 95% | 0.05g |
$228.0 | 2023-07-09 | |
| Enamine | EN300-6963461-0.1g |
6-methoxy-2-methylpyridin-3-ol |
58498-60-5 | 95% | 0.1g |
$340.0 | 2023-07-09 | |
| Enamine | EN300-6963461-0.25g |
6-methoxy-2-methylpyridin-3-ol |
58498-60-5 | 95% | 0.25g |
$485.0 | 2023-07-09 |
6-Methoxy-2-methyl-3-pyridinol Related Literature
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Jialiang Yuan,Ran Dong,Yuan Li,Yang Liu,Zhuo Zheng,Yuxia Liu,Yan Sun,Benhe Zhong,Zhenguo Wu,Xiaodong Guo Chem. Commun., 2021,57, 13004-13007
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Alvin Tanudjaja,Shinsuke Inagi,Fusao Kitamura,Toshikazu Takata,Ikuyoshi Tomita Dalton Trans., 2021,50, 3037-3043
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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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Xue-Ying Wang,Ying Pei,Min Xie,Zi-He Jin,Ya-Shi Xiao,Yang Wang,Li-Na Zhang,Yan Li,Wei-Hua Huang Lab Chip, 2015,15, 1178-1187
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Huiying Xu,Lu Zheng,Yu Zhou,Bang-Ce Ye Analyst, 2021,146, 5542-5549
Additional information on 6-Methoxy-2-methyl-3-pyridinol
6-Methoxy-2-methyl-3-pyridinol (CAS No. 58498-60-5): A Comprehensive Overview
6-Methoxy-2-methyl-3-pyridinol (CAS No. 58498-60-5) is a specialized organic compound that has garnered significant attention in the fields of pharmaceuticals, agrochemicals, and material science. This compound, characterized by its unique pyridine backbone with methoxy and methyl substituents, serves as a versatile intermediate in synthetic chemistry. Researchers and industry professionals frequently search for 6-Methoxy-2-methyl-3-pyridinol uses, synthesis methods, and safety data, reflecting its growing relevance in modern applications.
The molecular structure of 6-Methoxy-2-methyl-3-pyridinol features a pyridine ring substituted at the 2-position with a methyl group and at the 6-position with a methoxy group. This configuration imparts distinct chemical properties, making it valuable for drug development and catalysis. Recent trends in green chemistry have spurred interest in eco-friendly synthesis routes for such heterocyclic compounds, aligning with global sustainability goals. Searches for biodegradable intermediates and low-toxicity reagents often highlight compounds like this as alternatives to traditional chemicals.
In pharmaceutical research, 6-Methoxy-2-methyl-3-pyridinol is explored as a building block for active pharmaceutical ingredients (APIs). Its structural motifs are found in molecules targeting neurological and metabolic disorders, addressing current healthcare challenges like neurodegenerative diseases and diabetes management. The compound’s potential in crop protection formulations also aligns with the agricultural sector’s demand for novel pest control agents with reduced environmental impact.
From a commercial perspective, the market for 6-Methoxy-2-methyl-3-pyridinol is influenced by advancements in custom synthesis and contract manufacturing. Suppliers emphasizing high-purity grades and scalable production cater to industries requiring consistent quality. Analytical techniques such as HPLC and NMR are critical for verifying its purity, a topic frequently queried in technical forums.
Safety and handling guidelines for 6-Methoxy-2-methyl-3-pyridinol emphasize standard laboratory precautions. While not classified as hazardous under major regulatory frameworks, proper personal protective equipment (PPE) and ventilation are recommended during handling. Environmental considerations, including waste disposal protocols, are part of ongoing discussions in industrial hygiene communities.
Innovations in process optimization have reduced the cost of producing 6-Methoxy-2-methyl-3-pyridinol, making it more accessible for research and industrial use. Patent analyses reveal its incorporation into next-generation materials, such as conductive polymers and photoactive compounds, reflecting interdisciplinary applications. These developments respond to searches for cutting-edge chemical intermediates in tech-driven sectors.
In summary, 6-Methoxy-2-methyl-3-pyridinol (CAS No. 58498-60-5) exemplifies how niche chemicals drive progress across multiple industries. Its role in addressing global health, agricultural sustainability, and advanced materials underscores its scientific and commercial value. For those sourcing this compound, verifying supplier credentials and technical specifications remains essential to ensure optimal performance in end-use applications.
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