4-Bromotoluene: A Key Enabler in Chemical Synthesis and Innovation
In the dynamic field of chemical sciences, certain compounds form the bedrock for innovation and product development. 4-Bromotoluene, identified by its CAS number 106-38-7 and also known as p-Bromotoluene, is one such essential molecule. It functions as a critical organic synthesis building block, facilitating the creation of numerous complex organic compounds used across industries.
The pharmaceutical sector widely utilizes 4-Bromotoluene as a key pharmaceutical intermediate synthesis material. Its reliable CAS 106-38-7 chemical properties, including its defined melting point (26-29°C) and boiling point (184°C), are crucial for precise reaction control. The compound's participation in significant chemical transformations, such as the Heck reaction and its role as a ketone synthesis precursor in decarboxylative cross-coupling processes, underscores its versatility.
As a prominent choice for reaction reagent sourcing, 4-Bromotoluene enables efficient and effective synthetic strategies. The diverse p-bromotoluene chemical uses extend beyond pharmaceuticals into material science, where it contributes to the development of advanced polymers. NINGBO INNO PHARMCHEM CO.,LTD. is committed to supplying premium-grade 4-Bromotoluene, ensuring that researchers and manufacturers have access to a dependable supply of this vital chemical. Our dedication to quality and customer support empowers our clients to push the boundaries of scientific discovery and industrial application, making us a trusted partner in their endeavors.
Perspectives & Insights
Nano Explorer 01
“It functions as a critical organic synthesis building block, facilitating the creation of numerous complex organic compounds used across industries.”
Data Catalyst One
“The pharmaceutical sector widely utilizes 4-Bromotoluene as a key pharmaceutical intermediate synthesis material.”
Chem Thinker Labs
“Its reliable CAS 106-38-7 chemical properties, including its defined melting point (26-29°C) and boiling point (184°C), are crucial for precise reaction control.”