Cas no 156094-67-6 (Methyl 3-(6-methoxypyridin-2-yl)propanoate)
Methyl 3-(6-methoxypyridin-2-yl)propanoate Chemical and Physical Properties
Names and Identifiers
-
- methyl 3-(6-methoxypyridin-2-yl)propanoate
- GEEDBTAPPGZZFI-UHFFFAOYSA-N
- SB21422
- 2-Pyridinepropanoic acid, 6-methoxy-, methyl ester
- Methyl 3-(6-methoxypyridin-2-yl)propanoate
-
- Inchi: 1S/C10H13NO3/c1-13-9-5-3-4-8(11-9)6-7-10(12)14-2/h3-5H,6-7H2,1-2H3
- InChI Key: GEEDBTAPPGZZFI-UHFFFAOYSA-N
- SMILES: O(C)C(CCC1C=CC=C(N=1)OC)=O
Computed Properties
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 4
- Heavy Atom Count: 14
- Rotatable Bond Count: 5
- Complexity: 184
- Topological Polar Surface Area: 48.4
Methyl 3-(6-methoxypyridin-2-yl)propanoate Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| NAN JING YAO SHI KE JI GU FEN Co., Ltd. | PBYS1539-100.0mg |
methyl 3-(6-methoxypyridin-2-yl)propanoate |
156094-67-6 | 95% | 100.0mg |
¥673.0000 | 2025-04-12 | |
| NAN JING YAO SHI KE JI GU FEN Co., Ltd. | PBYS1539-250.0mg |
methyl 3-(6-methoxypyridin-2-yl)propanoate |
156094-67-6 | 95% | 250.0mg |
¥897.0000 | 2025-04-12 | |
| NAN JING YAO SHI KE JI GU FEN Co., Ltd. | PBYS1539-500.0mg |
methyl 3-(6-methoxypyridin-2-yl)propanoate |
156094-67-6 | 95% | 500.0mg |
¥1491.0000 | 2025-04-12 | |
| NAN JING YAO SHI KE JI GU FEN Co., Ltd. | PBYS1539-1.0g |
methyl 3-(6-methoxypyridin-2-yl)propanoate |
156094-67-6 | 95% | 1.0g |
¥2238.0000 | 2025-04-12 |
Methyl 3-(6-methoxypyridin-2-yl)propanoate Related Literature
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Joseph H. Bisesi,Tara Sabo-Attwood Environ. Sci.: Nano, 2014,1, 574-583
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4. Fatty acid eutectic mixtures and derivatives from non-edible animal fat as phase change materials?Pau Gallart-Sirvent,Marc Martín,Gemma Villorbina,Mercè Balcells,Aran Solé,Luisa F. Cabeza,Ramon Canela-Garayoa RSC Adv., 2017,7, 24133-24139
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Fereshteh Bayat Environ. Sci.: Nano, 2021,8, 367-389
Additional information on Methyl 3-(6-methoxypyridin-2-yl)propanoate
Comprehensive Overview of Methyl 3-(6-methoxypyridin-2-yl)propanoate (CAS No. 156094-67-6)
Methyl 3-(6-methoxypyridin-2-yl)propanoate, with the CAS number 156094-67-6, is a specialized organic compound that has garnered significant attention in the fields of pharmaceuticals, agrochemicals, and material science. This ester derivative, featuring a methoxypyridine moiety, is widely recognized for its versatility in synthetic chemistry and its potential applications in drug discovery and development. Researchers and industry professionals often search for terms like "Methyl 3-(6-methoxypyridin-2-yl)propanoate synthesis", "CAS 156094-67-6 applications", and "methoxypyridine derivatives", reflecting the compound's relevance in modern scientific inquiry.
The molecular structure of Methyl 3-(6-methoxypyridin-2-yl)propanoate combines a pyridine ring with a methoxy group and an ester functional group, making it a valuable intermediate in organic synthesis. Its unique properties, such as solubility in common organic solvents and stability under various reaction conditions, have made it a preferred choice for constructing complex molecules. Recent trends in green chemistry and sustainable synthesis have further highlighted the importance of such intermediates, as they often enable more efficient and environmentally friendly routes to target compounds.
In the pharmaceutical industry, Methyl 3-(6-methoxypyridin-2-yl)propanoate has been explored as a building block for active pharmaceutical ingredients (APIs). Its pyridine core is a common motif in drugs targeting neurological disorders, inflammation, and metabolic diseases. Searches for "pyridine-based drug candidates" and "ester derivatives in medicinal chemistry" frequently lead to discussions about this compound's potential. Additionally, its role in catalysis and ligand design has been investigated, particularly in the development of novel catalysts for asymmetric synthesis.
From an analytical perspective, CAS 156094-67-6 is characterized by techniques such as nuclear magnetic resonance (NMR), mass spectrometry (MS), and high-performance liquid chromatography (HPLC). These methods ensure the compound's purity and identity, which are critical for its use in research and industrial applications. The growing demand for high-purity chemical intermediates has driven advancements in analytical protocols, with many laboratories optimizing their workflows to accommodate compounds like Methyl 3-(6-methoxypyridin-2-yl)propanoate.
Beyond pharmaceuticals, this compound has found utility in the agrochemical sector, where it serves as a precursor for herbicides and insecticides. The methoxypyridine scaffold is known to enhance the bioactivity of agrochemicals, making it a key focus for researchers developing next-generation crop protection agents. Queries such as "agrochemical intermediates" and "pyridine derivatives in agriculture" often highlight its significance in this field.
In material science, Methyl 3-(6-methoxypyridin-2-yl)propanoate has been employed in the synthesis of functional polymers and coatings. Its ability to introduce aromatic heterocycles into polymer chains contributes to materials with improved thermal stability and mechanical properties. This aligns with the increasing interest in advanced materials for electronics, packaging, and automotive applications.
The commercial availability of CAS 156094-67-6 has also spurred interest in its scalable synthesis. Recent publications and patents describe innovative routes to produce this compound efficiently, addressing challenges such as yield optimization and cost reduction. These developments are particularly relevant to manufacturers seeking to integrate Methyl 3-(6-methoxypyridin-2-yl)propanoate into their supply chains for large-scale applications.
In summary, Methyl 3-(6-methoxypyridin-2-yl)propanoate (CAS No. 156094-67-6) is a multifaceted compound with broad applicability across scientific and industrial domains. Its role in drug discovery, agrochemical development, and material innovation underscores its importance in contemporary research. As the scientific community continues to explore its potential, this compound remains a subject of ongoing investigation and commercial interest.
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