2'-Fluoro-6'-hydroxyacetophenone (CAS 93339-98-1): A Key Intermediate in Organic Synthesis and Material Science
Discover the properties, applications, and sourcing of this crucial fluorinated aromatic ketone.
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2'-Fluoro-6'-hydroxyacetophenone
This compound serves as a vital building block in various chemical synthesis pathways, particularly in the development of novel organic materials and pharmaceutical intermediates. Its unique structure, featuring both fluorine and hydroxyl groups on an acetophenone backbone, offers versatile reactivity for diverse applications.
- Explore the properties of 2'-fluoro-6'-hydroxyacetophenone, including its molecular formula C8H7FO2 and a molecular weight of 154.14 g/mol, essential for precise chemical reactions.
- Learn about the synthesis of 2'-fluoro-6'-hydroxyacetophenone, often involving deprotection strategies to introduce the hydroxyl group, making it available for further functionalization.
- Understand the safe handling and storage of 2'-fluoro-6'-hydroxyacetophenone, typically requiring storage under an inert gas at refrigerated temperatures (2-8°C) to maintain its integrity.
- Investigate the buy 2'-fluoro-6'-hydroxyacetophenone options, as numerous suppliers offer this compound for research and industrial purposes, ensuring accessibility for R&D projects.
Key Advantages
Versatile Reactivity
The presence of both fluorine and hydroxyl groups on the aromatic ring of 2'-fluoro-6'-hydroxyacetophenone provides multiple sites for chemical modification, enabling its use in complex organic synthesis and the creation of tailored molecules for specific applications.
Building Block for Advanced Materials
As a significant organic intermediate, this compound is instrumental in constructing advanced materials, potentially contributing to the development of new electronic components, polymers, or specialized coatings through its unique chemical properties.
Pharmaceutical Intermediate Potential
The fluorinated nature and phenolic hydroxyl group make 2'-fluoro-6'-hydroxyacetophenone a valuable precursor in the synthesis of pharmaceutical compounds, potentially leading to new drug candidates with enhanced properties.
Key Applications
Organic Synthesis
Utilized as a key intermediate in various organic reactions, facilitating the creation of more complex molecular structures and chemical entities.
Material Science Research
Employed in the development of new functional materials, leveraging its unique chemical characteristics for applications in electronics, optoelectronics, and specialty polymers.
Pharmaceutical Research
Serves as a precursor for synthesizing potential drug candidates and biologically active molecules, contributing to advancements in medicinal chemistry.
Fine Chemical Manufacturing
A valuable component in the production of fine chemicals, where specific structural modifications are required for end-product performance.