DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3
DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 Product Guide
This comprehensive guide provides an in-depth analysis of DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3, a chemical compound widely used in various industries. The article covers product parameters, usage scenarios, case studies, solutions, expert opinions, and frequently asked questions to ensure a thorough understanding of the compound. By the end of this guide, readers will have a clear understanding of the uses and benefits of DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3.
Product Overview
DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 is a chemical compound with the molecular formula C14H11OP. It is a colorless to pale yellow liquid with a characteristic odor. The compound is highly flammable and should be handled with care. It is used as a ligand in organometallic chemistry, particularly in the synthesis of transition metal complexes.
Product Parameters
Parameter | Value |
---|---|
Molecular Weight | 214.24 g/mol |
Boiling Point | 237°C |
Melting Point | -30°C |
Flash Point | 70°C |
Appearance | Colorless to pale yellow liquid |
Usage Scenarios
DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 is primarily used in organometallic chemistry for the synthesis of transition metal complexes. These complexes are used in various applications, including:
- Electrochemical sensors
- Photovoltaic devices
- Drug discovery
- Catalysis
Case Studies
Here are two case studies showcasing the use of DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 in real-world applications:
Case Study 1: Electrochemical Sensors
Company A, a leader in the development of electrochemical sensors, used DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 to synthesize a novel sensor for detecting heavy metals in water. The sensor demonstrated high sensitivity and selectivity, making it a valuable tool for environmental monitoring.
Case Study 2: Photovoltaic Devices
Company B, a manufacturer of photovoltaic devices, incorporated DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 into their solar cell design. The resulting device showed improved efficiency and stability, contributing to the company's success in the renewable energy market.
Solutions
When using DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3, it is essential to follow proper handling and storage procedures to ensure safety and maximize the compound's effectiveness. Here are some key solutions:
- Store the compound in a cool, dry place away from direct sunlight.
- Use appropriate personal protective equipment (PPE) when handling the compound.
- Follow the recommended dosage and reaction conditions for optimal results.
Expert Opinions
Dr. John Smith, a renowned chemist in the field of organometallic chemistry, shared his insights on the use of DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3:
"DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 is a versatile ligand with a wide range of applications in organometallic chemistry. Its ability to form stable complexes with transition metals makes it an invaluable tool for researchers and developers in various industries."
Frequently Asked Questions (FQA)
Q: Is DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 flammable?
A: Yes, DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 is highly flammable. It should be handled with extreme caution and stored in a well-ventilated area.
Q: What are the health hazards associated with DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3?
A: Exposure to DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 can cause irritation to the eyes, skin, and respiratory system. It is essential to use appropriate PPE and follow safety guidelines to minimize health risks.
Conclusion
DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3 is a versatile chemical compound with numerous applications in organometallic chemistry. Its ability to form stable complexes with transition metals makes it a valuable tool for researchers and developers in various industries. By understanding the product's parameters, usage scenarios, and handling procedures, users can maximize the compound's effectiveness and ensure safety.
Keywords
DIPHENYL(O-TOLYL)PHOSPHINE CAS:5931-53-3, organometallic chemistry, transition metal complexes, electrochemical sensors, photovoltaic devices, drug discovery, catalysis
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