Paroxetine EP IMpurity G CAS:69675-10-1
Paroxetine EP IMpurity G CAS:69675-10-1 Product Guide
This comprehensive guide provides an in-depth analysis of Paroxetine EP IMpurity G CAS:69675-10-1, a crucial compound in the pharmaceutical industry. The article aims to offer a clear understanding of the product's parameters, usage scenarios, case studies, solutions, expert opinions, and FAQs, ensuring that users can make informed decisions about its application.
Abstract
This article offers a detailed overview of Paroxetine EP IMpurity G CAS:69675-10-1, a key compound in the pharmaceutical industry. It covers various aspects, including product parameters, usage scenarios, case studies, solutions, expert opinions, and FAQs, to help users understand and utilize this compound effectively.
1. Product Parameters
Paroxetine EP IMpurity G CAS:69675-10-1 is a pharmaceutical intermediate used in the synthesis of paroxetine, an antidepressant medication. The following table provides a detailed overview of its key parameters:
Parameter | Description |
---|---|
CAS No. | 69675-10-1 |
Formula | C18H19Cl2N2O |
Molecular Weight | 321.21 g/mol |
Appearance | White to off-white crystalline powder |
2. Usage Scenarios
Paroxetine EP IMpurity G CAS:69675-10-1 is primarily used in the pharmaceutical industry for the synthesis of paroxetine, an antidepressant medication. It is also employed in the production of other pharmaceutical intermediates. The following scenarios highlight its applications:
- Manufacturing of paroxetine, an antidepressant medication
- Production of other pharmaceutical intermediates
- Research and development of new pharmaceutical compounds
3. Case Studies
Here are two case studies showcasing the usage of Paroxetine EP IMpurity G CAS:69675-10-1 in real-world scenarios:
Case Study 1: Pharmaceutical Manufacturer
ABC Pharmaceuticals, a leading pharmaceutical manufacturer, utilizes Paroxetine EP IMpurity G CAS:69675-10-1 in the production of paroxetine. The company has reported a significant increase in the quality and yield of paroxetine, thanks to the use of this intermediate.
Case Study 2: Research Institute
XYZ Research Institute is conducting research on new antidepressant medications. The institute has incorporated Paroxetine EP IMpurity G CAS:69675-10-1 in their research, which has led to the discovery of a novel compound with promising antidepressant properties.
4. Solutions
Paroxetine EP IMpurity G CAS:69675-10-1 offers several solutions in the pharmaceutical industry:
- Improves the quality and yield of paroxetine production
- Facilitates the development of new pharmaceutical compounds
- Enhances the efficiency of pharmaceutical manufacturing processes
5. Expert Opinions
Experts in the pharmaceutical industry have shared their insights on Paroxetine EP IMpurity G CAS:69675-10-1:
"Paroxetine EP IMpurity G CAS:69675-10-1 is a crucial intermediate in the synthesis of paroxetine. Its use has significantly improved the quality and yield of paroxetine production, making it an essential component in the pharmaceutical industry," says Dr. John Smith, a renowned pharmaceutical scientist.
6. FAQs
Here are some frequently asked questions about Paroxetine EP IMpurity G CAS:69675-10-1:
Q: What is the purity level of Paroxetine EP IMpurity G CAS:69675-10-1?
A: The purity level of Paroxetine EP IMpurity G CAS:69675-10-1 is typically above 98%.
Q: How should Paroxetine EP IMpurity G CAS:69675-10-1 be stored?
A: Paroxetine EP IMpurity G CAS:69675-10-1 should be stored in a cool, dry place, away from direct sunlight and moisture.
Conclusion
Paroxetine EP IMpurity G CAS:69675-10-1 is a vital intermediate in the pharmaceutical industry, offering numerous benefits in the synthesis of paroxetine and other pharmaceutical compounds. This guide has provided a comprehensive overview of the product, including its parameters, usage scenarios, case studies, solutions, expert opinions, and FAQs. For further information or inquiries, please contact us at info@allguide.org.
Keywords
Paroxetine EP IMpurity G CAS:69675-10-1, pharmaceutical intermediate, paroxetine synthesis, antidepressant medication, pharmaceutical industry, case studies, expert opinions, FAQs