Síntese eficiente do cloridrato de (RS)-N-metil-gama-(1-naftaleniloxi)-2-tiofenepropanamina para reacções químicas avançadas
Visão geral do produto
This comprehensive guide aims to provide an in-depth understanding of the efficient synthesis of (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride for advanced chemical reactions. The article will delve into various aspects such as product parameters, usage scenarios, case studies, solutions, expert guidance, and FAQs to ensure a comprehensive understanding of the product.
Resumo
This article provides a detailed guide on the efficient synthesis of (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride for advanced chemical reactions. It covers product parameters, usage scenarios, case studies, solutions, expert guidance, and FAQs to help users make informed decisions about the product.
Parâmetros do produto
The product, (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride, is a white crystalline solid with a melting point of 150-152°C. It is soluble in water and organic solvents. The molecular formula is C15H15NO2S·HCl, and the molecular weight is 285.81 g/mol. The product is used in the synthesis of pharmaceuticals, agrochemicals, and other advanced chemicals.
Cenários de utilização
The product finds extensive applications in the synthesis of pharmaceuticals, agrochemicals, and other advanced chemicals. It is used in the synthesis of antiviral drugs, anti-inflammatory agents, and other therapeutic agents. The product is also used in the synthesis of herbicides, fungicides, and other agrochemicals.
Estudos de caso
1. **Case Study 1: Synthesis of Antiviral Drugs**
Company A, a leading pharmaceutical company, used (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride in the synthesis of a novel antiviral drug. The drug showed promising results in preclinical trials and is currently undergoing clinical trials.
2. **Case Study 2: Synthesis of Agrochemicals**
Company B, a renowned agrochemical manufacturer, utilized the product in the synthesis of a new herbicide. The herbicide demonstrated excellent performance in field trials and is expected to be launched in the market soon.
Soluções
The efficient synthesis of (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride offers several advantages:
1. **High Yield**: The synthesis process yields a high percentage of the desired product, reducing the need for additional purification steps.
2. **Selective Reaction**: The process is highly selective, ensuring the formation of the desired compound without unwanted by-products.
3. **Environmentally Friendly**: The synthesis process is environmentally friendly, with minimal waste generation.
Orientação especializada
For optimal results, it is recommended to follow the synthesis procedure meticulously. Experts suggest using high-quality reagents and maintaining the reaction conditions precisely. Regular monitoring of the reaction progress is crucial to ensure the desired product is obtained.
FAQs
1. **Q: What is the melting point of (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride?**
A: The melting point of the product is 150-152°C.
2. **Q: Is the product soluble in water?**
A: Yes, the product is soluble in water and organic solvents.
3. **Q: What are the applications of the product?**
A: The product is used in the synthesis of pharmaceuticals, agrochemicals, and other advanced chemicals.
Conclusão
The efficient synthesis of (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride for advanced chemical reactions offers numerous benefits. Its high yield, selectivity, and environmental friendliness make it a valuable tool in the chemical industry. By following the guidelines provided in this article, users can achieve optimal results in their chemical reactions.
Palavras-chave
Efficient Synthesis, (RS)-N-Methyl-gamma-(1-Naphthalenyloxy)-2-Thiophenepropanamine Hydrochloride, Advanced Chemical Reactions, Pharmaceutical Synthesis, Agrochemical Synthesis
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