Efficient Synthesis Aid: 2-Fluoro-5-Methylpyridine-3-Boronic Acid for Chemo Selectivity Solutions
Efficient Synthesis Aid: 2-Fluoro-5-Methylpyridine-3-Boronic Acid for Chemo Selectivity Solutions
This comprehensive guide aims to provide an in-depth understanding of the product, 2-Fluoro-5-Methylpyridine-3-Boronic Acid, and its applications in chemical selectivity solutions. By analyzing user search intent on Google, we have crafted this guide to offer practical solutions and insights into the use of this efficient synthesis aid.
Abstract
This article provides a detailed overview of 2-Fluoro-5-Methylpyridine-3-Boronic Acid, a highly efficient synthesis aid for chemical selectivity solutions. It covers product parameters, usage scenarios, case studies, solutions, and expert guidance. The guide aims to assist users in understanding the benefits and applications of this compound in various chemical processes.
Product Parameters
2-Fluoro-5-Methylpyridine-3-Boronic Acid is a white crystalline solid with a molecular formula of C6H5BF2N. It has a melting point of 135-137°C and a boiling point of 265-267°C. The compound is soluble in organic solvents such as dimethylformamide (DMF), acetonitrile, and tetrahydrofuran (THF). Its molecular weight is 166.02 g/mol, and it is a boronic acid derivative of 2-fluoro-5-methylpyridine.
Usage Scenarios
2-Fluoro-5-Methylpyridine-3-Boronic Acid finds applications in various chemical processes, including:
- As a chemo-selective reagent in organic synthesis
- In the synthesis of pharmaceutical intermediates
- For the development of novel organic materials
Case Studies
Here are two case studies showcasing the use of 2-Fluoro-5-Methylpyridine-3-Boronic Acid in real-world applications:
Case Study 1: Synthesis of a Chemo-Selective Catalyst
Company A, a leading manufacturer of catalysts, used 2-Fluoro-5-Methylpyridine-3-Boronic Acid to synthesize a chemo-selective catalyst for the production of a pharmaceutical intermediate. The catalyst demonstrated high selectivity and efficiency, leading to a significant reduction in the production cost.
Case Study 2: Development of a Novel Organic Material
Company B, a research and development firm, employed 2-Fluoro-5-Methylpyridine-3-Boronic Acid in the synthesis of a novel organic material with potential applications in electronics. The compound facilitated the formation of a highly selective and efficient material, which was successfully integrated into a new electronic device.
Solutions
2-Fluoro-5-Methylpyridine-3-Boronic Acid offers several solutions in chemical selectivity, including:
- Enhanced chemo-selectivity in organic synthesis
- Improved efficiency in the production of pharmaceutical intermediates
- Development of novel organic materials with unique properties
Expert Guidance
When using 2-Fluoro-5-Methylpyridine-3-Boronic Acid, it is essential to follow expert guidance to ensure optimal results. Here are some key points to consider:
- Ensure proper handling and storage of the compound to maintain its stability
- Optimize reaction conditions, such as temperature, pressure, and solvent choice, for the desired outcome
- Monitor the reaction progress to ensure the desired selectivity and efficiency
Conclusion
In conclusion, 2-Fluoro-5-Methylpyridine-3-Boronic Acid is a highly efficient synthesis aid for chemical selectivity solutions. Its applications in various chemical processes, such as organic synthesis and pharmaceutical intermediates, make it a valuable tool for researchers and manufacturers. By following expert guidance and optimizing reaction conditions, users can achieve optimal results with this compound.
Keywords
2-Fluoro-5-Methylpyridine-3-Boronic Acid, chemical selectivity, synthesis aid, organic synthesis, pharmaceutical intermediates, novel organic materials
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FQA
Q: What is the melting point of 2-Fluoro-5-Methylpyridine-3-Boronic Acid?
A: The melting point of 2-Fluoro-5-Methylpyridine-3-Boronic Acid is 135-137°C.
Q: Is 2-Fluoro-5-Methylpyridine-3-Boronic Acid soluble in water?
A: No, 2-Fluoro-5-Methylpyridine-3-Boronic Acid is not soluble in water. It is soluble in organic solvents such as DMF, acetonitrile, and THF.