High-Purity Benzyl 1-(4-bromophenyl)cyclopropylcarbamate: Synthesis, Applications, and Sourcing in China

Discover Benzyl 1-(4-bromophenyl)cyclopropylcarbamate, a critical pharmaceutical intermediate. Explore its synthesis, chemical properties, and applications in advanced organic synthesis. Learn why leading manufacturers in China are the preferred source for this high-purity compound for your research and development needs.

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Key Advantages of Partnering with Our Chemical Supplier

Guaranteed Purity and Quality

Our Benzyl 1-(4-bromophenyl)cyclopropylcarbamate is manufactured under stringent quality control measures, ensuring a minimum purity of 97%. This focus on quality is critical for consistent results in pharmaceutical synthesis and research, making us a reliable supplier.

Streamlined Procurement Process

We simplify the process of obtaining essential pharmaceutical intermediates. As a direct manufacturer in China, we offer direct purchasing and efficient logistics, providing clear pricing and prompt delivery for your convenience when you need to buy.

Technical Expertise and Support

Leverage our deep understanding of organic synthesis and pharmaceutical intermediates. We offer technical support and detailed product information, assisting researchers and procurement managers in selecting the right materials for their specific applications.

Diverse Applications in Chemical Innovation

Pharmaceutical Synthesis

This compound serves as a crucial intermediate in the synthesis of various drug candidates, particularly those requiring specific structural motifs like cyclopropane rings and bromo-substituted phenyl ethers, enabling innovative therapeutic solutions.

Organic Chemistry Research

Its unique structure makes it valuable for exploring new synthetic methodologies, including cross-coupling reactions and functional group transformations. Researchers seeking high-quality building blocks for novel compound discovery will find it indispensable.

Agrochemical Development

The cyclopropane moiety is known to enhance metabolic stability in agrochemicals. This intermediate could be explored for the development of new, more effective pesticides and herbicides, offering potential performance benefits.

Material Science Exploration

While primarily used in pharmaceuticals, the compound's reactive sites might also be leveraged in the development of specialized polymers or functional materials, expanding its utility beyond traditional applications.