Explore the Versatility of 4-Bromostyrene (CAS 2039-82-9)
Discover its critical role in organic synthesis and advanced material development.
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4-Bromostyrene
4-Bromostyrene (CAS 2039-82-9) is a highly versatile para-halogenated styrene derivative, indispensable for various advanced chemical syntheses. Its unique structure makes it a key intermediate in the creation of complex organic molecules and functional materials.
- Synthesis of Nitroolefins: Facilitates the efficient synthesis of nitroolefins via alkene cross-metathesis, a vital reaction in organic chemistry.
- Heck Reaction Applications: Plays a crucial role in the Heck reaction for poly(1,4-phenylenevinylene) synthesis, important for organic electronics.
- Structure-Activity Relationship Studies: Utilized in structure-activity relationships of styrene vinyl group to understand how molecular modifications affect chemical and biological properties.
- Advanced Material Synthesis: Essential for investigating the photochemical growth of Br-terminated self-assembled monolayers and the synthesis of silsesquioxanes.
Advantages in Chemical Synthesis
Versatile Reactivity
Leverage the reactivity of the vinyl group and the bromine substituent for diverse synthetic pathways, including cross-coupling reactions and polymerization.
High Purity Standards
Ensure reliable results in your research and production with stringent purity specifications, often achieved through advanced purification techniques like vacuum distillation.
Enabling Advanced Materials
Contribute to the development of cutting-edge materials by using 4-Bromostyrene as a building block in polymers and specialized organic compounds.
Key Applications
Organic Synthesis
A fundamental building block for creating complex organic molecules, its use in the synthesis of nitroolefins via alkene cross-metathesis is particularly notable.
Polymer Science
Essential in the Heck reaction for poly(1,4-phenylenevinylene) synthesis, contributing to the field of organic electronics and conductive polymers.
Material Science Research
Crucial for studies involving the photochemical growth of Br-terminated self-assembled monolayers, offering insights into surface chemistry.
Pharmaceutical Intermediates
Its structure and reactivity make it valuable in the structure-activity relationships of styrene vinyl group, aiding in the design of new therapeutic agents.