Discover 1-[(4-bromophenyl)methyl]-1-methoxy-3-phenylurea CAS: 149281-92-5
Your essential building block for advanced organic synthesis and pharmaceutical research.
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1-[(4-bromophenyl)methyl]-1-methoxy-3-phenylurea
This specialized compound, identified by CAS 149281-92-5, is a crucial component for researchers and manufacturers in the field of organic chemistry. With a high purity of 95%min, it ensures reliable results in complex synthesis pathways.
- High purity 149281-92-5 chemical: Ensuring minimal interference and maximum yield in your reactions.
- Buy 1-[(4-bromophenyl)methyl]-1-methoxy-3-phenylurea 149281-92-5: Secure your supply of this vital chemical intermediate from trusted sources.
- Stable under normal conditions: Offering consistent performance and ease of handling for your laboratory needs.
- Available in multiple packaging sizes: From small-scale research to larger production runs, we cater to your specific volume requirements.
Product Advantages
Reliable Synthesis Intermediate
Utilize this high purity compound as a key building block for intricate organic synthesis projects, contributing to the success of your pharmaceutical intermediate sourcing efforts.
Guaranteed Quality
Benefit from the stringent quality control of our fine chemical manufacturing processes, providing you with a dependable reagent for critical applications.
Versatile Application
Whether for laboratory-scale experiments or industrial production, its stability and purity make it an ideal choice for various research chemicals for drug discovery.
Key Applications
Organic Synthesis
A critical reagent for creating complex organic molecules, supporting advancements in organic chemistry building blocks.
Pharmaceutical Intermediates
Essential for the development of new drug compounds, aligning with the demands of pharmaceutical intermediate sourcing.
Chemical Research
An invaluable tool for academic and industrial research, facilitating breakthroughs in advanced chemical synthesis materials.
Material Science
Potentially applicable in novel material development due to its unique chemical structure and properties.