Efficient Solutions for 2-Thiophenecarbonitrile CAS 1003-31-2 in Chemical Synthesis
Efficient Solutions for 2-Thiophenecarbonitrile CAS 1003-31-2 in Chemical Synthesis
2-Thiophenecarbonitrile, with the CAS number 1003-31-2, is a versatile intermediate in chemical synthesis. This guide provides an in-depth analysis of the product, including its parameters, usage scenarios, case studies, solutions, and expert guidance. By understanding the nuances of this compound, researchers and chemists can optimize their synthesis processes and achieve better results.
Product Overview
2-Thiophenecarbonitrile is a colorless to pale yellow liquid with a pungent odor. It is a key intermediate in the synthesis of various thiophene derivatives, which are widely used in pharmaceuticals, agrochemicals, and materials science. The molecular formula of 2-Thiophenecarbonitrile is C4H3NS, and its molecular weight is 97.14 g/mol. The product is available in different purity levels, typically 98% to 99.9%.
Product Parameters
Parameter | Value |
---|---|
Molecular Formula | C4H3NS |
Molecular Weight | 97.14 g/mol |
Purity | 98% to 99.9% |
Appearance | Colorless to pale yellow liquid |
Odor | Pungent |
Usage Scenarios
2-Thiophenecarbonitrile finds applications in various chemical synthesis processes. Some of the common usage scenarios include:
- Production of thiophene derivatives: 2-Thiophenecarbonitrile is used as a key intermediate in the synthesis of thiophene derivatives, which are used in pharmaceuticals, agrochemicals, and materials science.
- Production of dyes and pigments: The compound is used in the synthesis of dyes and pigments, which are used in various industries, including textiles, plastics, and paints.
- Production of organic synthesis intermediates: 2-Thiophenecarbonitrile is used as an intermediate in the synthesis of various organic compounds, such as heterocyclic compounds and pharmaceuticals.
Case Studies
Here are a few case studies showcasing the use of 2-Thiophenecarbonitrile in chemical synthesis:
- Case Study 1: A pharmaceutical company used 2-Thiophenecarbonitrile to synthesize a novel thiophene derivative, which was further developed into a new drug candidate.
- Case Study 2: An agrochemical company utilized 2-Thiophenecarbonitrile in the synthesis of a fungicide, which was effective in controlling fungal diseases in crops.
- Case Study 3: A materials science company employed 2-Thiophenecarbonitrile in the synthesis of a novel polymer, which exhibited excellent thermal stability and mechanical properties.
Solutions
Efficient solutions for the synthesis of 2-Thiophenecarbonitrile include:
- Optimized reaction conditions: By carefully controlling the reaction temperature, pressure, and catalyst concentration, the yield and purity of 2-Thiophenecarbonitrile can be improved.
- Green chemistry approaches: Utilizing green chemistry principles, such as using biodegradable solvents and minimizing waste generation, can enhance the sustainability of the synthesis process.
- Advanced separation techniques: Employing advanced separation techniques, such as chromatography and crystallization, can help in purifying 2-Thiophenecarbonitrile and obtaining high-purity products.
Expert Guidance
Expert guidance is crucial in the synthesis of 2-Thiophenecarbonitrile. Some key points to consider are:
- Understanding the reaction mechanism: A thorough understanding of the reaction mechanism can help in optimizing the synthesis process and achieving better results.
- Choosing the right catalyst: The choice of catalyst can significantly impact the yield and purity of 2-Thiophenecarbonitrile. It is essential to select a catalyst that is suitable for the specific reaction conditions.
- Monitoring the reaction progress: Regular monitoring of the reaction progress can help in identifying potential issues and taking corrective actions to ensure the desired outcome.
Conclusion
In conclusion, 2-Thiophenecarbonitrile CAS 1003-31-2 is a versatile intermediate in chemical synthesis. By understanding its parameters, usage scenarios, case studies, solutions, and expert guidance, researchers and chemists can optimize their synthesis processes and achieve better results. If you have any questions or require further information, please feel free to contact us at info@allguide.org.
Keywords
2-Thiophenecarbonitrile, CAS 1003-31-2, chemical synthesis, intermediates, pharmaceuticals, agrochemicals, materials science, reaction conditions, green chemistry, separation techniques, expert guidance.