4'-(2-Methylpropyl)acetophenone: Key Intermediate for Pharmaceutical Synthesis and Proteomics Research
Discover the crucial role of this high-purity chemical in advancing pharmaceutical development and scientific research.
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4'-(2-Methylpropyl)acetophenone
This high-purity chemical serves as a vital intermediate in synthesizing crucial pharmaceuticals like ibuprofen. Its unique properties also make it valuable in cutting-edge proteomics research and various organic synthesis pathways.
- Leverage 4'-(2-Methylpropyl)acetophenone uses for advanced pharmaceutical ingredient production.
- Explore its role in proteomics research to understand complex biological systems.
- Utilize this compound as a versatile intermediate in complex organic synthesis pathways.
- Source CAS 38861-78-8 with confidence for your critical research and development needs.
Advantages Offered
High Purity and Quality
Ensuring 99.5% minimum assay, this compound meets stringent quality standards essential for pharmaceutical synthesis and reliable research outcomes.
Critical Pharmaceutical Role
As a key component in ibuprofen synthesis, it directly contributes to the production of widely used anti-inflammatory medications, underscoring its importance in healthcare.
Versatile Research Applications
Its utility extends to proteomics research, offering scientists a valuable tool for intricate biological studies and the advancement of molecular science.
Key Applications
Pharmaceutical Synthesis
Essential for the synthesis of drugs like ibuprofen, contributing to the production of anti-inflammatory agents.
Proteomics Research
A valuable reagent in proteomics, aiding in the study of protein structures, functions, and interactions.
Organic Synthesis Intermediate
Serves as a versatile building block for creating a wide array of complex organic molecules.
Quality Control in Pharmaceuticals
Identified as an impurity in ibuprofen tablets, its monitoring is vital for pharmaceutical quality assurance.