3,5-Dinitrobenzotrifluoride (CAS 401-99-0): Properties & Applications for R&D
For researchers and developers in the chemical industry, the selection of high-quality intermediates is fundamental to the success of their projects. 3,5-Dinitrobenzotrifluoride (CAS 401-99-0) stands out as a key organic synthesis intermediate, offering unique properties that drive innovation in both agrochemical and pharmaceutical fields. This article aims to provide R&D professionals with a detailed understanding of this compound, its specifications, and the advantages of sourcing it from reputable manufacturers.
Understanding the Chemical Profile
3,5-Dinitrobenzotrifluoride is an aromatic compound identified by its CAS number 401-99-0. It typically appears as a yellow to yellow-green powder, a visual indicator of its chemical nature. The molecular formula C7H3F3N2O4 accurately defines its composition, with a molecular weight of approximately 236.105. A critical specification for any R&D application is its assay or purity, which for this compound commonly exceeds 98.0%. This high purity is essential for ensuring predictable reaction outcomes and minimizing the presence of unwanted side products in complex synthesis pathways. Its physical properties, such as melting point and solubility, are also important considerations for laboratory and industrial-scale applications.
Key Applications Driving R&D Focus
- Agrochemical Development: The compound is a vital intermediate in the synthesis of advanced pesticides. The inclusion of the trifluoromethyl group can significantly enhance the efficacy, stability, and selectivity of these crop protection agents. Researchers looking to develop new herbicides, insecticides, or fungicides often incorporate this intermediate into their synthetic routes to achieve desired biological activity. When planning your next pesticide project, consider purchasing high-purity 3,5-Dinitrobenzotrifluoride.
- Pharmaceutical Research: In medicinal chemistry, 3,5-Dinitrobenzotrifluoride serves as a versatile building block. The trifluoromethyl moiety is frequently used to modify the pharmacokinetic properties of drug candidates, potentially improving absorption, distribution, metabolism, and excretion (ADME) profiles. Its nitro groups also offer reactive sites for further chemical transformations. Scientists involved in drug discovery will find this intermediate invaluable for synthesizing novel molecular entities with therapeutic potential. For your research needs, sourcing this compound from a reliable supplier ensures the integrity of your experiments.
Strategic Sourcing for R&D Projects
For R&D departments, timely access to reliable, high-quality chemical intermediates is crucial. When procuring 3,5-Dinitrobenzotrifluoride, it is advisable to partner with manufacturers and suppliers who can guarantee consistent product quality, purity, and availability. Companies based in China often offer a competitive edge in terms of pricing and production capacity for such intermediates. Prioritizing suppliers with robust quality control systems and a proven track record in delivering to international markets is essential. Always request detailed specifications and Certificates of Analysis (CoA) to confirm the product meets your stringent R&D requirements. Purchasing from a trusted manufacturer not only ensures quality but also provides a stable supply chain for ongoing research projects.
In conclusion, 3,5-Dinitrobenzotrifluoride is an indispensable intermediate for advancements in agrochemicals and pharmaceuticals. R&D professionals should focus on sourcing this compound from reputable manufacturers, ensuring high purity and reliable supply to drive their innovation forward. We encourage you to request a quote and sample to evaluate our commitment to supporting your research endeavors.
Perspectives & Insights
Agile Reader One
“This high purity is essential for ensuring predictable reaction outcomes and minimizing the presence of unwanted side products in complex synthesis pathways.”
Logic Vision Labs
“Its physical properties, such as melting point and solubility, are also important considerations for laboratory and industrial-scale applications.”
Molecule Origin 88
“Key Applications Driving R&D Focus Agrochemical Development: The compound is a vital intermediate in the synthesis of advanced pesticides.”