Ethyl 4,4,4-Trifluoro-2-butynoate: A Versatile Building Block for Advanced Chemical Synthesis
Unlock new possibilities in chemical synthesis with this high-purity fluorinated alkyne ester, essential for innovation.
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Ethyl 4,4,4-Trifluoro-2-butynoate
This colorless liquid, identified by CAS number 79424-03-6, is a critical component in the synthesis of complex organic molecules. Its unique structure, featuring a trifluoromethyl group and an alkyne moiety, provides exceptional reactivity and versatility for various chemical transformations. This compound is instrumental in developing novel materials, advancing pharmaceutical research, and creating new generations of pesticides.
- Discover the power of trifluoromethyl alkyne ester in your next synthesis project. This molecule serves as a key building block for creating intricate chemical structures with desired properties.
- Explore the benefits of using fluorinated compounds in chemical research. Ethyl 4,4,4-trifluoro-2-butynoate is a prime example of a fluorinated building block offering unique electronic and steric effects.
- Source high-quality chemical intermediates for your R&D needs. Reliable access to compounds like ethyl 4,4,4-trifluoro-2-butynoate is crucial for consistent and successful experimental outcomes.
- Leverage ethyl 4,4,4-trifluoro-2-butynoate synthesis for efficient reaction pathways. Understanding its properties aids in optimizing reaction conditions for better yields and purity.
Key Advantages
Enhanced Reactivity
The trifluoromethyl group significantly influences the electronic properties of the alkyne, leading to unique reactivity profiles beneficial for various organic synthesis reactions and chemical research reagents.
Versatile Building Block
As a critical organic synthesis intermediate, it can be readily incorporated into diverse molecular frameworks, supporting the development of advanced materials and pharmaceuticals.
Purity and Reliability
Ensuring high purity levels for compounds like ethyl 4,4,4-trifluoro-2-butynoate is paramount for the reproducibility and success of complex chemical research and applications.
Key Applications
Pharmaceutical Synthesis
Utilized as a key intermediate in the synthesis of novel drug candidates and pharmaceutical compounds, contributing to breakthroughs in medicine.
New Material Development
Incorporated into the design and creation of advanced functional materials with specific optical, electronic, or thermal properties.
Agrochemical Innovation
Plays a role in the development of next-generation pesticides and agrochemicals, enhancing crop protection and agricultural efficiency.
Specialty Chemical Manufacturing
Serves as a valuable reagent in the production of niche and specialty chemicals for various industrial applications and scientific research.