Solución eficaz para la síntesis de 5-[4-(1-metiletoxi)fenil]-2-piridinamina

Efficient Solution for 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine Synthesis: A Comprehensive Guide

This article provides a detailed guide on the synthesis of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine, a compound with significant applications in various industries. By analyzing user search intent on Google, we have crafted a comprehensive solution guide that covers product parameters, usage scenarios, case studies, solutions, expert guidance, and FAQs. This guide aims to assist users in understanding the synthesis process and its applications.

Resumen

This article presents an in-depth analysis of the synthesis of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine, a compound with diverse applications. By addressing user search intent on Google, we provide a comprehensive guide that covers product parameters, usage scenarios, case studies, solutions, expert guidance, and FAQs. This guide aims to assist users in understanding the synthesis process and its applications.

1. Parámetros del producto

5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine is a white to off-white crystalline solid with a melting point of 123-125°C. It is soluble in organic solvents such as methanol, ethanol, and acetone. The molecular formula of the compound is C12H12N2O, and its molecular weight is 196.22 g/mol. The following table provides a detailed overview of the product parameters:

Parámetro Valor
Fórmula molecular C12H12N2O
Peso molecular 196.22 g/mol
Punto de fusión 123-125°C
Solubilidad Organic solvents (methanol, ethanol, acetone)

2. Escenarios de uso

5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine finds applications in various industries, including pharmaceuticals, agrochemicals, and materials science. Some of the common usage scenarios are as follows:

  • Productos farmacéuticos: El compuesto se utiliza como material de partida para la síntesis de diversos productos farmacéuticos, incluidos agentes antivirales, antibacterianos y antifúngicos.
  • Agrochemicals: It is used as an intermediate in the synthesis of agrochemicals, such as herbicides and insecticides.
  • Materials Science: The compound is used in the synthesis of novel materials, such as polymers and organic-lead compounds.

3. Casos prácticos

Here are two case studies showcasing the application of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine in the pharmaceutical industry:

  • Case Study 1: A pharmaceutical company used 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine as a starting material for the synthesis of an antiviral agent. The synthesis process was optimized to achieve high yields and purity, resulting in a cost-effective production of the antiviral agent.
  • Case Study 2: Another pharmaceutical company utilized the compound as an intermediate in the synthesis of an antibacterial agent. The optimized synthesis process led to a significant reduction in production costs and improved the overall efficiency of the manufacturing process.

4. Soluciones

Several solutions are available for the synthesis of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine. The following are some of the commonly used methods:

  • Reagents: The synthesis process requires specific reagents, such as 4-(1-methylethoxy)benzaldehyde, aniline, and sodium cyanide.
  • Equipment: The synthesis process requires standard laboratory equipment, such as a round-bottom flask, magnetic stirrer, and vacuum pump.
  • Procedure: The synthesis process involves several steps, including the formation of the intermediate, cyclization, and purification.

5. Orientación experta

Expert guidance is crucial for the successful synthesis of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine. Here are some tips from experts in the field:

  • Optimize reaction conditions: Adjusting reaction temperature, pressure, and time can improve yields and purity.
  • Use appropriate reagents: Selecting the right reagents can enhance the efficiency of the synthesis process.
  • Monitor reaction progress: Regularly monitoring the reaction progress can help identify potential issues and optimize the process.

6. Preguntas frecuentes

Here are some frequently asked questions about the synthesis of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine:

  • Q: What is the melting point of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine?
  • A: The melting point of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine is 123-125°C.
  • Q: What are the common usage scenarios of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine?
  • R: Este compuesto tiene aplicaciones farmacéuticas, agroquímicas y en la ciencia de materiales.
  • Q: How can I optimize the synthesis process of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine?
  • A: Optimize reaction conditions, use appropriate reagents, and monitor reaction progress.

Conclusión

This article provides a comprehensive guide on the synthesis of 5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine, covering product parameters, usage scenarios, case studies, solutions, expert guidance, and FAQs. By following the guidelines and expert advice provided in this guide, users can successfully synthesize the compound and explore its diverse applications.

Palabras clave

5-[4-(1-Methylethoxy)phenyl]-2-pyridinamine, synthesis, pharmaceuticals, agrochemicals, materials science, usage scenarios, case studies, solutions, expert guidance, FAQs

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