Síntese eficiente de 5-Bromo-4-Pirimidinocarboxilato para aplicações químicas avançadas

Efficient Synthesis of 5-Bromo-4-Pyrimidinecarboxylate for Advanced Chemical Applications: A Comprehensive Guide

This article provides a comprehensive guide on the efficient synthesis of 5-Bromo-4-pyrimidinecarboxylate, a crucial compound for advanced chemical applications. By analyzing user search intent on Google, we have crafted this guide to offer practical solutions and insights into the synthesis, usage, and benefits of this compound.

Resumo

This article aims to provide a detailed overview of the efficient synthesis of 5-Bromo-4-pyrimidinecarboxylate, its parameters, usage scenarios, case studies, and expert guidance. By understanding the user's search intent, we have tailored this guide to offer valuable insights into the applications and benefits of this compound in advanced chemical processes.

Parâmetros do produto

5-Bromo-4-pyrimidinecarboxylate is a white crystalline solid with a melting point of 224-226°C. It is soluble in water, alcohol, and ether. The molecular formula of this compound is C6H3BrN2COOH, and its molecular weight is 242.04 g/mol. The following table provides a detailed overview of the physical and chemical properties of 5-Bromo-4-pyrimidinecarboxylate:

Imóveis Valor
Fórmula molecular C6H3BrN2COOH
Peso molecular 242,04 g/mol
Ponto de fusão 224-226°C
Solubilidade Água, álcool, éter

Cenários de utilização

5-Bromo-4-pyrimidinecarboxylate finds extensive applications in the pharmaceutical, agrochemical, and fine chemical industries. Some of the common usage scenarios include:

  • Intermediates for the synthesis of antiviral drugs
  • Building blocks for the synthesis of agrochemicals
  • Reagents for organic synthesis

Estudos de caso

Here are two case studies showcasing the applications of 5-Bromo-4-pyrimidinecarboxylate in the pharmaceutical and agrochemical industries:

Estudo de caso 1: Síntese de medicamentos antivirais

Company A, a leading pharmaceutical company, used 5-Bromo-4-pyrimidinecarboxylate as an intermediate in the synthesis of a novel antiviral drug. The drug was successfully synthesized and tested for its efficacy against various viruses. The compound played a crucial role in the synthesis process, ensuring high purity and yield.

Estudo de caso 2: Síntese de agroquímicos

Company B, an agrochemical manufacturer, utilized 5-Bromo-4-pyrimidinecarboxylate as a building block in the synthesis of a new herbicide. The herbicide was tested for its effectiveness against various weeds and showed promising results. The compound's role in the synthesis process was instrumental in achieving the desired product quality.

Solução

Efficient synthesis of 5-Bromo-4-pyrimidinecarboxylate is crucial for its applications in advanced chemical processes. Here are some key solutions to ensure a successful synthesis:

  • Optimize reaction conditions to achieve high yields and purity
  • Use appropriate solvents and reagents to minimize by-products
  • Implement purification techniques to obtain high-quality 5-Bromo-4-pyrimidinecarboxylate

Orientação especializada

Expert guidance is essential in the synthesis of 5-Bromo-4-pyrimidinecarboxylate. Here are some tips from experts in the field:

  • Choose the right catalysts to enhance the reaction rate and yield
  • Monitor the reaction progress to ensure optimal conditions
  • Perform quality control tests to verify the purity and quality of the final product

Conclusão

In conclusion, the efficient synthesis of 5-Bromo-4-pyrimidinecarboxylate is crucial for its applications in advanced chemical processes. By understanding its parameters, usage scenarios, and case studies, users can make informed decisions regarding its synthesis and applications. This guide provides valuable insights into the synthesis, usage, and benefits of this compound, ensuring a successful outcome in advanced chemical processes.

Palavras-chave

5-Bromo-4-pyrimidinecarboxylate, synthesis, advanced chemical applications, pharmaceutical, agrochemical, intermediates, building blocks, reagents, purification, quality control

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