Product Name: Factory Supply 2,6-Diacetylpyridine CAS 1129-30-2 With Best Price
CAS Number: 1129 - 30 - 2
2,6-Diacetylpyridine is a heterocyclic organic compound. Its molecular formula is C₉H₉NO₂, and the molecular weight is approximately 163.17 g/mol. It appears as a white to off - white crystalline powder. This product is factory - supplied, ensuring a stable and large - scale production capacity. The best price offered makes it a cost - effective choice for customers in various industries.
2,6-Diacetylpyridine has a wide range of applications in different fields:
Chemical Synthesis: It serves as an important intermediate in the synthesis of various pharmaceuticals, agrochemicals, and functional materials. For example, it can be used in the synthesis of new drug molecules with potential biological activities due to its unique chemical structure that can participate in a variety of chemical reactions such as condensation, cyclization, and substitution.
Material Science: In the field of material science, it can be used to prepare metal - organic frameworks (MOFs). These MOFs have potential applications in gas storage, separation, and catalysis. The acetyl groups on the 2,6 - positions of the pyridine ring can coordinate with metal ions to form stable framework structures.
Analytical Chemistry: It can be used as a ligand in analytical chemistry for the detection and determination of metal ions. By forming complexes with metal ions, it can change the spectral properties, which can be used for the quantitative and qualitative analysis of metal ions in samples.
Handling Precautions: When handling 2,6 - Diacetylpyridine, appropriate personal protective equipment should be worn, including gloves, safety goggles, and a lab coat. It should be stored in a cool, dry, and well - ventilated place, away from heat sources and oxidizing agents. Avoid direct contact with skin, eyes, and clothing. In case of accidental contact, immediately rinse with plenty of water and seek medical advice if necessary.
Reaction Conditions: In chemical synthesis reactions, the reaction conditions need to be carefully controlled. The choice of solvent, reaction temperature, and reaction time will affect the reaction yield and product purity. Generally, polar organic solvents such as ethanol, methanol, or acetonitrile are commonly used. The reaction temperature usually ranges from room temperature to reflux temperature, depending on the specific reaction requirements.
Pharmaceutical Synthesis Case: A pharmaceutical company was developing a new anti - inflammatory drug. They used 2,6 - Diacetylpyridine as an intermediate. First, they dissolved 2,6 - Diacetylpyridine in ethanol and added a specific amino compound. Under reflux conditions for 6 hours, a condensation reaction occurred, forming an important intermediate compound. After purification by column chromatography, the yield of the intermediate was about 70%. Subsequently, through a series of further reactions, the final anti - inflammatory drug was synthesized. The new drug showed good anti - inflammatory activity in pre - clinical tests.
MOF Preparation Case: A research group in material science aimed to prepare a new type of MOF for gas storage. They mixed 2,6 - Diacetylpyridine with a metal salt (such as zinc nitrate) in a mixed solvent of water and ethanol. Under hydrothermal conditions at 120 °C for 24 hours, a MOF with a three - dimensional structure was formed. The BET surface area of the MOF was measured to be about 1500 m²/g, indicating its potential application in gas storage, especially for carbon dioxide capture.
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