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Specifications
| Appearance: | Off-white to light yellow solid |
| Purity (GC): | 95% min |
Transport Information
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Parameter |
Specification |
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UN Number |
3259 |
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Class |
8 |
|
Packing Group |
II |
|
H.S. Code |
2921499090305 |
|
Stability & Reactivity |
The product is chemically stable under standard ambient conditions. |
|
Storage |
Keep container tightly closed in a dry and well-ventilated place. |
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Condition to Avoid |
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Package |
Applications
3,5-Bis(trifluoromethyl)benzylamine (CAS 85068-29-7) is a fluorinated aromatic amine widely used in the fields of pharmaceuticals, agrochemicals, and specialty chemical synthesis. Its structure, featuring two trifluoromethyl groups on a benzylamine framework, imparts strong electron-withdrawing properties, enhancing its utility as a versatile building block in organic synthesis. It is commonly employed as an intermediate in the preparation of active pharmaceutical ingredients (APIs), particularly in drug discovery programs where fluorinated substituents are valued for improving metabolic stability, lipophilicity, and bioavailability. In agrochemical research, it aids in the development of novel crop protection agents by improving potency and environmental stability. Beyond life sciences, this compound finds roles in materials science for producing fluorinated polymers and functional materials with enhanced chemical resistance and durability.
Benefits
The benefits of 3,5-bis(trifluoromethyl)benzylamine are rooted in its ability to confer desirable physicochemical and biological properties when incorporated into larger molecular frameworks. The presence of trifluoromethyl groups enhances binding interactions in drug-receptor systems, often leading to improved pharmacokinetic profiles and therapeutic efficacy. In agrochemicals, it contributes to longer-lasting formulations with reduced degradation, supporting more efficient pest and disease control. For materials science, it offers the advantage of increased thermal stability, resistance to harsh conditions, and tunable surface characteristics, which are highly valuable in coatings, membranes, and specialty polymers. Its versatility as a synthetic intermediate ensures that it can be adapted to a wide range of research and industrial applications, making it an asset for innovation across multiple sectors.
Conclusion
In conclusion, 3,5-bis(trifluoromethyl)benzylamine stands out as a multifunctional intermediate with significant contributions to pharmaceuticals, agrochemicals, and materials science. Its fluorinated structure provides enhanced performance benefits that drive innovation, while its adaptability ensures ongoing relevance in both applied and exploratory research. As industries continue to demand advanced compounds with superior properties, this chemical remains an important tool for pushing forward developments in health, agriculture, and material technologies.

