Ayuda a la síntesis eficiente: Ácido 6-cloro-5-metilpiridina-3-borónico para reacciones químicas avanzadas.
Efficient Synthesis Aid: 6-Chloro-5-Methylpyridine-3-Boronic Acid for Advanced Chemical Reactions
This article aims to provide a comprehensive guide on the use of 6-Chloro-5-Methylpyridine-3-Boronic Acid as an efficient synthesis aid in advanced chemical reactions. By analyzing user search intent on Google, we have compiled a detailed guide that covers product parameters, usage scenarios, case studies, solutions, expert guidance, and FAQs to help users make informed decisions.
Resumen
This article discusses the application of 6-Chloro-5-Methylpyridine-3-Boronic Acid as an efficient synthesis aid in advanced chemical reactions. It provides insights into the product parameters, usage scenarios, case studies, and expert guidance to help users make informed decisions. The article aims to serve as a valuable resource for chemists and researchers in the field.
1. Parámetros del producto
6-Chloro-5-Methylpyridine-3-Boronic Acid is a white crystalline solid with a melting point of 194-196°C. It is soluble in water, methanol, and dimethylformamide. The molecular formula of the compound is C7H6ClNO2Br, and its molecular weight is 224.5 g/mol.
2. Escenarios de uso
6-Chloro-5-Methylpyridine-3-Boronic Acid is widely used in the synthesis of various organic compounds, including heterocycles, pharmaceuticals, and agrochemicals. It is particularly useful in the following scenarios:
- Síntesis de derivados de piridina
- Construction of heterocyclic compounds
- Pharmaceutical intermediate synthesis
3. Casos prácticos
Here are two case studies showcasing the use of 6-Chloro-5-Methylpyridine-3-Boronic Acid in advanced chemical reactions:
Caso práctico 1: Síntesis de derivados de la piridina
Company A used 6-Chloro-5-Methylpyridine-3-Boronic Acid to synthesize a series of pyridine derivatives. The reaction conditions were optimized to achieve high yields and purity. The resulting compounds were further characterized using various spectroscopic techniques, and their structures were confirmed.
Case Study 2: Construction of Heterocyclic Compounds
Company B employed 6-Chloro-5-Methylpyridine-3-Boronic Acid in the synthesis of a heterocyclic compound. The reaction was carried out under mild conditions, resulting in a high yield and purity of the desired product. The synthesized compound was evaluated for its potential applications in the pharmaceutical industry.
4. Soluciones
6-Chloro-5-Methylpyridine-3-Boronic Acid offers several advantages as a synthesis aid:
- Gran pureza y estabilidad
- Fácil de manejar y almacenar
- Excelente compatibilidad con diversas condiciones de reacción
5. Orientación experta
When using 6-Chloro-5-Methylpyridine-3-Boronic Acid, it is essential to follow the guidelines provided by the manufacturer. Here are some expert recommendations:
- Ensure proper handling and storage of the compound to maintain its purity
- Optimizar las condiciones de reacción para lograr altos rendimientos y pureza
- Perform regular quality control checks to ensure the desired product quality
6. Preguntas frecuentes
Here are some frequently asked questions about 6-Chloro-5-Methylpyridine-3-Boronic Acid:
Q: What is the shelf life of 6-Chloro-5-Methylpyridine-3-Boronic Acid?
A: The shelf life of 6-Chloro-5-Methylpyridine-3-Boronic Acid is typically 2 years when stored in a cool, dry place.
Q: Can 6-Chloro-5-Methylpyridine-3-Boronic Acid be used in large-scale production?
A: Yes, 6-Chloro-5-Methylpyridine-3-Boronic Acid is suitable for large-scale production due to its high purity and stability.
Conclusión
6-Chloro-5-Methylpyridine-3-Boronic Acid is an efficient synthesis aid that finds wide application in advanced chemical reactions. Its high purity, stability, and compatibility with various reaction conditions make it an excellent choice for chemists and researchers. By following the guidelines provided in this article, users can achieve optimal results in their chemical syntheses.
Palabras clave
6-Chloro-5-Methylpyridine-3-Boronic Acid, synthesis aid, advanced chemical reactions, product parameters, usage scenarios, case studies, solutions, expert guidance, FAQs
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