3,5-Bis(trifluoromethyl)bromobenzene: A Key Pharmaceutical Intermediate and Building Block for Advanced Synthesis

Discover the essential properties and applications of 3,5-Bis(trifluoromethyl)bromobenzene, a vital component in modern pharmaceutical development and a cornerstone for complex organic synthesis. Leverage its unique structure to drive innovation.

Get a Quote & Sample

Advantages Offered by the Product

Enhanced Molecular Properties

The trifluoromethyl groups in 3,5-Bis(trifluoromethyl)bromobenzene significantly enhance the lipophilicity and metabolic stability of downstream compounds, a key aspect in designing effective pharmaceuticals. This makes it a prime choice for exploring fluorinated building blocks for drug discovery.

Versatile Synthesis Applications

As a critical CAS 328-70-1 synthesis component, it facilitates key reactions, acting as a precursor for stable electrophilic organic and organometallic cations, thereby expanding its utility in complex organic synthesis.

High Purity and Reliability

Our commitment to providing high purity chemical intermediates ensures that 3,5-Bis(trifluoromethyl)bromobenzene meets stringent quality standards, guaranteeing consistent performance crucial for pharmaceutical applications and reliable supply from China.

Key Applications

Pharmaceutical Synthesis

A primary use is as a crucial building block in the synthesis of advanced pharmaceutical intermediates, supporting the development of new drug molecules by leveraging 3,5-Bis(trifluoromethyl)bromobenzene pharmaceutical intermediate properties.

Drug Discovery

Its ability to impart lipophilicity and metabolic stability makes it a valuable component in drug discovery, aiding researchers in creating compounds with improved pharmacokinetic profiles.

Organic Synthesis

The compound's reactive nature makes it a versatile tool for organic chemists, enabling the construction of complex aromatic structures through various synthetic routes.

Chemical Research & Development

Essential for R&D, it is utilized in exploring new chemical reactions and synthesizing novel compounds, underscoring its importance in custom synthesis of brominated aromatics.