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Product Line: Electronic Chemicals

2-(4-bromophenyl)propan-2-ol

CAS 2077-19-2

Molecular structure of 2-(4-bromophenyl)propan-2-ol

CAS · 2077-19-2

01

Product Overview

2-(4-bromophenyl)propan-2-ol is a high-purity oled-materials supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Pale yellow solid
Purity (HPLC) 98% min
Identification (NMR) 1H-NMR
03

Applications

2-(4-Bromophenyl)propan-2-ol is primarily used as a versatile intermediate in organic synthesis and pharmaceutical development. Its structure, featuring a brominated aromatic ring and a tertiary alcohol group, allows it to participate in substitution, coupling, and oxidation reactions, making it valuable for constructing more complex molecules. It is frequently employed in the preparation of active pharmaceutical ingredients, bioactive compounds, and fine chemicals where para-substituted phenyl groups and tertiary alcohol functionalities are required. The compound also finds use in research settings for synthesizing heterocyclic structures, exploring structure-activity relationships, and developing intermediates for medicinal chemistry applications.

04

Benefits

The compound offers multiple advantages due to its dual functionality. The bromine atom enables selective cross-coupling reactions, such as Suzuki or Heck reactions, facilitating the formation of carbon–carbon bonds with high efficiency. The tertiary alcohol group provides a reactive site for further modification, including oxidation, esterification, or substitution, allowing flexible synthetic routes. Its stability under standard laboratory conditions and predictable reactivity enhance reproducibility and efficiency in multistep syntheses. These characteristics make it a reliable building block for chemists seeking to construct structurally complex and biologically relevant molecules.

05

Conclusion

2-(4-Bromophenyl)propan-2-ol is an important intermediate for pharmaceutical, fine chemical, and research applications. Its applications in constructing para-substituted aromatic compounds and tertiary alcohol derivatives, along with benefits such as versatile reactivity, stability, and synthetic flexibility, make it a valuable tool in modern organic synthesis. The compound supports efficient, high-fidelity production of advanced molecular architectures across laboratory and industrial settings.

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