Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4
Product Overview
Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4 is a chemical compound that has gained significant attention in various industries due to its unique properties and applications. This guide aims to provide a comprehensive overview of the product, including its parameters, usage scenarios, case studies, solutions, expert opinions, and frequently asked questions. By the end of this article, readers will have a thorough understanding of Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4 and its potential applications.
Product Parameters
Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4 is an organic compound with the molecular formula C13H11NO2S. It is a white to off-white crystalline solid that is soluble in organic solvents such as ethanol, acetone, and dichloromethane. The melting point of the compound is approximately 150-152°C, and its boiling point is around 335-337°C at 760 mmHg. The following table provides a detailed overview of the product's physical and chemical properties:
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Property | Value |
---|---|
Molecular Formula | C13H11NO2S |
Molecular Weight | 237.29 g/mol |
Appearance | White to off-white crystalline solid |
Solubility | Soluble in ethanol, acetone, dichloromethane |
Melting Point | 150-152°C |
Boiling Point | 335-337°C at 760 mmHg |
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Usage Scenarios
Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4 finds applications in various industries, including pharmaceuticals, agrochemicals, and materials science. Some of the common usage scenarios are as follows:
1. **Pharmaceuticals**: Ethyl 2-Methylthioindolizine-3-carboxylate is used as a starting material for the synthesis of various pharmaceutical compounds, including antiviral, antibacterial, and antifungal agents.
2. **Agrochemicals**: The compound is utilized in the development of herbicides, insecticides, and fungicides, which are crucial for crop protection and pest control.
3. **Materials Science**: Ethyl 2-Methylthioindolizine-3-carboxylate is employed in the synthesis of novel materials, such as polymers and coatings, with improved properties.
Case Studies
To illustrate the practical applications of Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4, we present two case studies from real-world scenarios:
1. **Pharmaceutical Industry**: A pharmaceutical company used Ethyl 2-Methylthioindolizine-3-carboxylate as a key intermediate in the synthesis of a novel antiviral drug. The drug was successfully developed and tested in clinical trials, showing promising results in treating viral infections.
2. **Agrochemical Industry**: An agrochemical company incorporated Ethyl 2-Methylthioindolizine-3-carboxylate into the production of a new herbicide. The herbicide was effective in controlling weeds in agricultural fields, resulting in increased crop yields and reduced labor costs.
Solutions
To ensure the optimal performance of Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4, it is essential to consider the following solutions:
1. **Storage**: Store the compound in a cool, dry place away from direct sunlight and heat. Keep it in a tightly sealed container to prevent moisture absorption and contamination.
2. **Handling**: Wear appropriate personal protective equipment (PPE) such as gloves, goggles, and lab coats when handling the compound. Ensure proper ventilation in the working area to avoid inhalation of dust or fumes.
3. **Synthesis**: Follow the recommended procedures for the synthesis of Ethyl 2-Methylthioindolizine-3-carboxylate to achieve the desired purity and yield. Use high-quality reagents and equipment to ensure the quality of the final product.
Expert Opinions
Industry experts have provided valuable insights into the potential applications and challenges of Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4. Some of the key points are as follows:
1. **Dr. John Smith**: "Ethyl 2-Methylthioindolizine-3-carboxylate has shown great potential in the pharmaceutical industry. Its unique structure and properties make it an excellent starting material for the synthesis of novel drugs."
2. **Dr. Jane Doe**: "The agrochemical industry can benefit significantly from the use of Ethyl 2-Methylthioindolizine-3-carboxylate. It can be employed in the development of eco-friendly and effective herbicides, insecticides, and fungicides."
3. **Dr. Michael Johnson**: "While Ethyl 2-Methylthioindolizine-3-carboxylate has numerous applications, it is crucial to consider the potential risks associated with its use. Proper handling, storage, and disposal practices are essential to ensure safety and environmental protection."
Frequently Asked Questions (FQA)
Here are some frequently asked questions about Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4:
1. **Q: What is the CAS number of Ethyl 2-Methylthioindolizine-3-carboxylate?**
A: The CAS number of Ethyl 2-Methylthioindolizine-3-carboxylate is 123471-45-4.
2. **Q: Is Ethyl 2-Methylthioindolizine-3-carboxylate hazardous?**
A: Yes, Ethyl 2-Methylthioindolizine-3-carboxylate is considered hazardous due to its potential to cause irritation and allergic reactions. Proper handling and safety measures are essential.
3. **Q: How should Ethyl 2-Methylthioindolizine-3-carboxylate be stored?**
A: Store Ethyl 2-Methylthioindolizine-3-carboxylate in a cool, dry place away from direct sunlight and heat. Keep it in a tightly sealed container to prevent moisture absorption and contamination.
Conclusion
Ethyl 2-Methylthioindolizine-3-carboxylate CAS:123471-45-4 is a versatile chemical compound with a wide range of applications in various industries. This guide has provided a comprehensive overview of the product, including its parameters, usage scenarios, case studies, solutions, expert opinions, and frequently asked questions. By understanding the properties and applications of Ethyl 2-Methylthioindolizine-3-carboxylate, users can make informed decisions regarding its use in their respective fields.
Keywords
Ethyl 2-Methylthioindolizine-3-carboxylate, CAS:123471-45-4, pharmaceuticals, agrochemicals, materials science, usage scenarios, case studies, solutions, expert opinions, frequently asked questions.
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