Cas no 1228898-62-1 (5,6-Dibromopyridine-3-methanol)
5,6-Dibromopyridine-3-methanol Chemical and Physical Properties
Names and Identifiers
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- 5,6-Dibromopyridine-3-methanol
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- Inchi: 1S/C6H5Br2NO/c7-5-1-4(3-10)2-9-6(5)8/h1-2,10H,3H2
- InChI Key: DHEOSZOQUWWJDS-UHFFFAOYSA-N
- SMILES: BrC1=C(N=CC(=C1)CO)Br
Computed Properties
- Hydrogen Bond Donor Count: 1
- Hydrogen Bond Acceptor Count: 2
- Heavy Atom Count: 10
- Rotatable Bond Count: 1
- Complexity: 112
- XLogP3: 1.7
- Topological Polar Surface Area: 33.1
5,6-Dibromopyridine-3-methanol Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| Alichem | A023022664-250mg |
5,6-Dibromopyridine-3-methanol |
1228898-62-1 | 97% | 250mg |
$714.00 | 2023-09-03 | |
| Alichem | A023022664-500mg |
5,6-Dibromopyridine-3-methanol |
1228898-62-1 | 97% | 500mg |
$960.40 | 2023-09-03 | |
| Alichem | A023022664-1g |
5,6-Dibromopyridine-3-methanol |
1228898-62-1 | 97% | 1g |
$1730.40 | 2023-09-03 |
5,6-Dibromopyridine-3-methanol Related Literature
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Supaporn Sawadjoon,Joseph S. M. Samec Org. Biomol. Chem., 2011,9, 2548-2554
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Lei Yang,Yuan Zeng,Haibo Wu,Chunwu Zhou,Lei Tao J. Mater. Chem. B, 2020,8, 1383-1388
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Kanjun Sun,Fengting Hua,Shuzhen Cui,Yanrong Zhu,Hui Peng,Guofu Ma RSC Adv., 2021,11, 37631-37642
Additional information on 5,6-Dibromopyridine-3-methanol
5,6-Dibromopyridine-3-methanol: A Comprehensive Overview
5,6-Dibromopyridine-3-methanol is a chemical compound with the CAS number 1228898-62-1. This compound is a derivative of pyridine, a six-membered aromatic heterocyclic ring containing one nitrogen atom. The presence of two bromine atoms at the 5 and 6 positions and a hydroxymethyl group at the 3 position gives this compound its unique structure and properties. 5,6-Dibromopyridine-3-methanol has been the subject of recent research due to its potential applications in various fields, including materials science and pharmaceuticals.
The synthesis of 5,6-Dibromopyridine-3-methanol involves a multi-step process that typically begins with the bromination of pyridine derivatives. Researchers have explored various methods to optimize the yield and purity of this compound. Recent studies have focused on using catalytic systems and green chemistry principles to minimize environmental impact while maintaining high efficiency. The compound's stability under different conditions has also been a topic of interest, particularly in its application as a precursor for more complex molecules.
One of the most promising applications of 5,6-Dibromopyridine-3-methanol lies in its use as an intermediate in the synthesis of advanced materials. For instance, it has been employed in the development of novel polymers with enhanced thermal stability and mechanical properties. These polymers have potential applications in aerospace and electronics industries where high-performance materials are critical. Additionally, recent research has highlighted the compound's role in drug discovery, particularly in the design of bioactive molecules targeting specific diseases.
The physical properties of 5,6-Dibromopyridine-3-methanol are well-documented. It exists as a crystalline solid at room temperature with a melting point around 120°C. The compound is sparingly soluble in water but dissolves readily in organic solvents such as dichloromethane and acetonitrile. Its UV-vis spectrum shows strong absorption bands due to the conjugated aromatic system, making it suitable for applications in optoelectronics.
From a safety standpoint, 5,6-Dibromopyridine-3-methanol is classified as non-hazardous under normal handling conditions. However, it should be stored away from light and moisture to prevent degradation. Occupational exposure guidelines recommend using standard laboratory precautions when working with this compound.
In conclusion, 5,6-Dibromopyridine-3-methanol (CAS No: 1228898-62-1) is a versatile compound with significant potential across multiple industries. Its unique structure and properties make it an invaluable tool for researchers and manufacturers alike. As advancements in synthetic methods continue to emerge, the future applications of this compound are expected to expand further.
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