Cas no 926194-75-4 (6-(2-Methylpiperidin-1-yl)pyridin-3-amine)
6-(2-Methylpiperidin-1-yl)pyridin-3-amine Chemical and Physical Properties
Names and Identifiers
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- 6-(2-methylpiperidin-1-yl)pyridin-3-amine
- 6-(2-METHYL-1-PIPERIDINYL)-3-PYRIDINYLAMINE
- 6-(2-Methylpiperidin-1-yl)pyridin-3-amine
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- Inchi: 1S/C11H17N3/c1-9-4-2-3-7-14(9)11-6-5-10(12)8-13-11/h5-6,8-9H,2-4,7,12H2,1H3
- InChI Key: ZWFDUGBJEATHNP-UHFFFAOYSA-N
- SMILES: N1(C2C=CC(=CN=2)N)CCCCC1C
Computed Properties
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 3
- Heavy Atom Count: 14
- Rotatable Bond Count: 1
- Complexity: 183
- Topological Polar Surface Area: 42.2
6-(2-Methylpiperidin-1-yl)pyridin-3-amine Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| TRC | M269221-100mg |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 100mg |
$ 70.00 | 2022-06-04 | ||
| TRC | M269221-500mg |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 500mg |
$ 275.00 | 2022-06-04 | ||
| TRC | M269221-1g |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 1g |
$ 410.00 | 2022-06-04 | ||
| Matrix Scientific | 051811-500mg |
6-(2-Methyl-1-piperidinyl)-3-pyridinylamine |
926194-75-4 | 500mg |
$237.00 | 2021-06-27 | ||
| Matrix Scientific | 051811-2.500g |
6-(2-Methyl-1-piperidinyl)-3-pyridinylamine |
926194-75-4 | 2.500g |
$720.00 | 2021-06-27 | ||
| Life Chemicals | F1908-1668-0.25g |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 95%+ | 0.25g |
$280.0 | 2023-09-07 | |
| Life Chemicals | F1908-1668-0.5g |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 95%+ | 0.5g |
$295.0 | 2023-09-07 | |
| Life Chemicals | F1908-1668-1g |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 95%+ | 1g |
$311.0 | 2023-09-07 | |
| Life Chemicals | F1908-1668-2.5g |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 95%+ | 2.5g |
$622.0 | 2023-09-07 | |
| Life Chemicals | F1908-1668-5g |
6-(2-methylpiperidin-1-yl)pyridin-3-amine |
926194-75-4 | 95%+ | 5g |
$933.0 | 2023-09-07 |
6-(2-Methylpiperidin-1-yl)pyridin-3-amine Related Literature
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1. Excimer emission and magnetoluminescence of radical-based zinc(ii) complexes doped in host crystals?Shojiro Kimura,Tetsuro Kusamoto Chem. Commun., 2020,56, 11195-11198
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Gaurav J. Shah,Eric P.-Y. Chiou,Ming C. Wu,Chang-Jin “CJ” Kim Lab Chip, 2009,9, 1732-1739
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J. Matthew Kurley,Phillip W. Halstenberg,Abbey McAlister,Stephen Raiman,Richard T. Mayes RSC Adv., 2019,9, 25602-25608
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Christopher B. Rodell,Christopher B. Highley,Minna H. Chen,Neville N. Dusaj,Chao Wang,Lin Han,Jason A. Burdick Soft Matter, 2016,12, 7839-7847
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Joseph H. Bisesi,Tara Sabo-Attwood Environ. Sci.: Nano, 2014,1, 574-583
Additional information on 6-(2-Methylpiperidin-1-yl)pyridin-3-amine
Comprehensive Guide to 6-(2-Methylpiperidin-1-yl)pyridin-3-amine (CAS No. 926194-75-4): Properties, Applications, and Market Insights
6-(2-Methylpiperidin-1-yl)pyridin-3-amine (CAS No. 926194-75-4) is a specialized organic compound that has garnered significant attention in pharmaceutical and chemical research. This compound, featuring a pyridine core substituted with a 2-methylpiperidin-1-yl group and an amine functionality, exhibits unique physicochemical properties that make it valuable for various applications. Researchers and industry professionals often search for terms like "6-(2-Methylpiperidin-1-yl)pyridin-3-amine synthesis", "CAS 926194-75-4 applications", and "pyridine derivatives in drug discovery", reflecting the growing interest in this molecule.
The molecular structure of 6-(2-Methylpiperidin-1-yl)pyridin-3-amine contributes to its versatility in medicinal chemistry. The pyridine ring provides a rigid aromatic framework, while the 2-methylpiperidine moiety introduces stereochemical complexity and potential for hydrogen bonding. These features are particularly relevant in current drug discovery trends, where researchers focus on targeted therapies and small molecule modulators of biological pathways. Recent publications have highlighted the importance of such heterocyclic compounds in developing treatments for neurological disorders and inflammatory conditions.
From a synthetic chemistry perspective, 6-(2-Methylpiperidin-1-yl)pyridin-3-amine serves as a valuable building block for more complex structures. The presence of both amine and tertiary amine functionalities allows for diverse chemical modifications, making it a sought-after intermediate in organic synthesis. Laboratories frequently inquire about "CAS 926194-75-4 purity standards" and "6-(2-Methylpiperidin-1-yl)pyridin-3-amine suppliers", indicating its importance in research workflows. The compound typically appears as a white to off-white crystalline powder with good solubility in common organic solvents, properties that are crucial for its handling and application in various reactions.
The pharmaceutical applications of 6-(2-Methylpiperidin-1-yl)pyridin-3-amine are particularly noteworthy. Current research explores its potential as a pharmacophore in drug candidates targeting G-protein coupled receptors (GPCRs) and kinase enzymes. These areas represent hot topics in drug development, with many researchers searching for "novel GPCR modulators" and "kinase inhibitor scaffolds". The compound's structural features allow it to interact with various biological targets, making it a promising starting point for medicinal chemistry programs. Recent patent literature suggests its incorporation in compounds being investigated for cognitive enhancement and neuroprotection.
Analytical characterization of 6-(2-Methylpiperidin-1-yl)pyridin-3-amine typically involves techniques such as HPLC, NMR spectroscopy, and mass spectrometry. Quality control parameters for this compound are frequently searched topics, including "CAS 926194-75-4 analytical methods" and "6-(2-Methylpiperidin-1-yl)pyridin-3-amine stability data". The compound generally shows good stability under standard storage conditions (room temperature, protected from light and moisture), though prolonged exposure to air may lead to gradual degradation, necessitating proper handling protocols.
In the context of green chemistry initiatives, there is growing interest in sustainable synthesis routes for 6-(2-Methylpiperidin-1-yl)pyridin-3-amine. Researchers are exploring catalytic methods and atom-economical transformations to produce this compound with reduced environmental impact. These efforts align with broader industry trends toward green pharmaceutical manufacturing and sustainable chemical processes, topics that generate significant search traffic among environmentally conscious chemists and procurement specialists.
The market for 6-(2-Methylpiperidin-1-yl)pyridin-3-amine reflects its niche but important role in chemical research. While not a bulk commodity, it commands premium pricing due to its specialized applications and the technical challenges associated with its synthesis. Procurement professionals often search for "CAS 926194-75-4 price trends" and "reliable 6-(2-Methylpiperidin-1-yl)pyridin-3-amine manufacturers". The compound is typically supplied in small to medium quantities (gram to kilogram scale) by specialty chemical companies catering to the pharmaceutical and biotechnology sectors.
Safety considerations for handling 6-(2-Methylpiperidin-1-yl)pyridin-3-amine follow standard laboratory protocols for organic compounds. While not classified as highly hazardous, proper personal protective equipment (PPE) including gloves and safety glasses should be used. Material safety data sheets (MSDS) provide specific handling instructions, and searches for "CAS 926194-75-4 safety data" are common among laboratory personnel preparing to work with this material.
Future research directions for 6-(2-Methylpiperidin-1-yl)pyridin-3-amine are likely to focus on expanding its utility in drug discovery and exploring novel synthetic applications. The compound's structural features make it a candidate for development of covalent inhibitors and proteolysis targeting chimeras (PROTACs), two rapidly growing areas in pharmaceutical research. These emerging applications may drive increased demand and spur innovation in manufacturing processes for this valuable chemical building block.
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