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HS Code |
624981 |
| Chemical Name | 3,4,5-Trifluorobenzotrifluoride |
| Cas Number | 328-75-6 |
| Molecular Formula | C7H2F6 |
| Molecular Weight | 218.08 |
| Appearance | Colorless liquid |
| Boiling Point C | 114-116 |
| Melting Point C | -26 |
| Density G Ml | 1.488 |
| Refractive Index | 1.399 |
| Flash Point C | 32 |
| Solubility In Water | Insoluble |
| Pubchem Cid | 12564 |
As an accredited 3,4,5-Trifluorobenzotrifluoride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The chemical is packaged in a 250-gram amber glass bottle with a tightly sealed cap, labeled with hazard symbols and product information. |
| Shipping | 3,4,5-Trifluorobenzotrifluoride is shipped in sealed, chemical-resistant containers compliant with hazardous materials regulations. Packages are clearly labeled with hazard information and handled to prevent leaks or spills. Shipping follows local and international guidelines, such as DOT or IATA, ensuring safety measures for temperature, ventilation, and protection against physical damage during transit. |
| Storage | 3,4,5-Trifluorobenzotrifluoride should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from direct sunlight and sources of ignition. Keep it separate from incompatible materials such as strong acids, bases, and oxidizers. Ensure the storage area is equipped to handle flammable liquids and has appropriate spill containment measures in place. Handle with proper personal protective equipment. |
Applications of 3,4,5-Trifluorobenzotrifluoride in Industrial ManufacturingWe supply high-purity 3,4,5-Trifluorobenzotrifluoride to specialist manufacturers who require consistent quality, precise traceability, and direct technical support for complex integration into advanced industrial formulations. The downstream sectors below highlight the specific, established roles this material plays as a core intermediate or formulation component through to high-value finished goods. 1. Agrochemical Intermediate for Herbicide Synthesis3,4,5-Trifluorobenzotrifluoride serves as a critical aromatic building block in developing fluorinated herbicides. Synthesis routes utilize its unique reactivity, enabling the introduction of multiple fluorine atoms into active ingredients for modern weed control products. Formulators adjust loading based on targeted bioactivity and regulatory residue limits for end-use in agricultural preparations. Industry compliance standards
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2. Pharmaceutical Intermediate in API SynthesisCustom synthesis groups leverage 3,4,5-Trifluorobenzotrifluoride as a key starting material for the generation of advanced intermediates and fluorinated heterocycles central to several commercial drug substances. Medicinal chemists value its electronic influence for selective activation, which is fundamental in the synthesis of next-generation molecules for oncology and CNS therapies. Industry compliance standards
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3. Halogenated Solvent Precursor for Electronics CleaningThis compound anchors the synthesis of new-generation halogenated solvents used for high-standard cleaning of semiconductor components and precision optical lenses. Manufacturers favor its stable perfluorinated structure for generating pure solvents with minimized surface tension and residue, critical in microelectronics fabrication environments. Industry compliance standards
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4. Fluorinated Monomer Precursor for High-Performance Polymer ManufacturingDownstream polymer manufacturers process 3,4,5-Trifluorobenzotrifluoride as a reactive aromatic core in producing specialty monomers for fluoropolymer chains. These tailored monomers impart chemical resistance and thermal stability, integral to coatings and engineered plastics facing aggressive industrial media and elevated temperatures. Industry compliance standards
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As a chemical manufacturer with decades in fluorine chemistry, we have witnessed how demand for niche fluoroaromatic compounds has steadily grown. Among those, 3,4,5-Trifluorobenzotrifluoride—CAS 328-74-5—serves as an essential building block in the synthesis of complex molecules. This compound stands out with its benzene core adorned by trifluoromethyl and three fluorine atoms at the 3, 4, and 5 positions, which directly influences its reactivity and application potential.
We produce this molecule through controlled halogenation and subsequent selective fluorination, ensuring batch consistency and purity. Our facility delivers 3,4,5-Trifluorobenzotrifluoride in both industrial drums and laboratory-scale packaging, supporting customers ranging from research teams to production chemists.
Customers seek out our 3,4,5-Trifluorobenzotrifluoride because they trust the rigorous quality assurance that shapes every batch. The chemical formula—C7HF6—translates into a colorless to pale liquid, boasting high chemical stability. Purity commonly exceeds 99 percent, a necessity for pharmaceutical and agrochemical synthesis. The boiling point lies around 110°C under standard pressure. From an operator’s perspective, it handles much like other aromatic solvents, but with volatility and solvency dictated by the six fluorine atoms.
This molecular design bestows unique properties compared to other halogenated benzenes. The electron-withdrawing nature of the trifluoromethyl group at the para position influences substitution and coupling chemistry. Unlike monofluorinated analogs, this compound suppresses side reactions caused by reactive hydrogen atoms. Our chemists note its remarkable performance as a coupling partner in metal-catalyzed cross-couplings, such as Suzuki-Miyaura, granting access to otherwise tricky fluorinated motifs.
From process engineers to medicinal chemists, the community relies on this compound to bridge key challenges in synthesis. Our 3,4,5-Trifluorobenzotrifluoride is regularly chosen as a feedstock for pharmaceutical intermediates. The strong C–F bonds resist metabolic degradation, leading researchers to harness these motifs for longer-lasting bioactive substances. In our feedback loop with customers, we find they appreciate the predictable reactivity—where substitutions favor positions unshielded by existing fluorination, and trifluoromethyl presence minimizes off-target derivatization.
In agrochemicals, formulators deploy this fluoroarene to build crop protection agents with increased persistence and reduced environmental breakdown. Testing in our pilot facilities repeatedly demonstrates clean conversion and minimal byproduct formation, which translates to less downstream purification and improved environmental metrics.
Our chemists have supported a range of custom syntheses leveraging its hydrophobic and lipophilic character, qualities that influence membrane penetration in drug design. New materials science projects now explore this intermediary in the creation of specialty fluorinated polymers and coatings, where resistance to solvents and weathering outperforms non-fluorinated analogs.
Experience has taught us that small differences in reaction control translate to noticeable changes in downstream product quality. In producing 3,4,5-Trifluorobenzotrifluoride, temperature gradients, reagent ratios, and residence time all impact the fluorine incorporation pattern. Not every route yields material suitable for regulated sectors, and customers from regulated industries such as pharmaceutical and agrochemical production regularly audit our methodology to verify chain of custody and process transparency.
We manage all fluorination steps in closed-loop systems with continuous monitoring of effluent and offgassing. Waste minimization and adherence to Responsible Care principles shape how we optimize yields without sacrificing operator safety. Hazardous waste is disposed of per environmental standards, with frequent third-party audits supporting our compliance and commitment. Our long-term customers return because they observe batch-to-batch reproducibility and quick response if an out-of-specification issue ever arises.
Differences emerge when comparing our 3,4,5-Trifluorobenzotrifluoride to less-substituted products. Mono- and difluorinated analogs may offer lower raw material cost, but the presence of three aromatic fluorines and a trifluoromethyl group add valuable selectivity in substitution. Direct introduction of further functional groups becomes more predictable. Our clients find that they spend less time troubleshooting unpredictable conversions and less money on purification compared to more basic fluorinated benzenes. For project leaders weighing cost versus synthetic utility, this molecule represents a proven value-add.
Widespread adoption brings challenges. The production of multi-fluorinated aromatics poses environmental burdens, especially with traditional halogen exchange methods. Our early years saw issues with perfluorinated byproducts and emission of ozone-depleting propellants. Ongoing investment in greener synthesis allows our team to curtail waste streams and target only the desired degree of substitution. For example, advanced flow reactors paired with recycling columns now recover over 80 percent of spent fluorinating agents for reactivation.
Another persistent problem involves scale-up for pilot and full manufacturing runs. Laboratory chemists often observe different behavior from kilo-lab reactors compared to tonne-scale vessels; reaction exotherms amplify, and trace contaminants become more noticeable. In scaling our 3,4,5-Trifluorobenzotrifluoride production tenfold, we run thermal mapping at every stage, replicating pilot conditions as closely as possible. Batch tracking and precise control of all inputs plus continuous operator training ensures quality. On two occasions, we detected minor off-target substitution that only became evident at large scale. Instead of masking problems, we share root cause analyses with customers and optimize parameters to avoid recurrence.
Safe handling requires attention, as high-purity batches can volatilize easily and inhalation risks need respect. Documentation, safety training, and closed drum delivery limit operator exposure and improve plant hygiene. For customers who store or blend this compound, we advise strict containment, safety data compliance, and use of compatible lining materials to avoid leaching or corrosion.
Within the chemical synthesis toolbox, several trifluorinated benzenes compete for attention. Our product stands apart by virtue of the trifluoromethyl group. While 3,4,5-trifluorobenzene bears similar fluorination, it misses out on the electron-withdrawing and steric influence of CF3. This changes downstream reactivity; partners like palladium and nickel catalysts show altered selectivity, and final derivatization often yields purer fractions with fewer impurities.
Practically, the commercial advantage shines during synthesis of active ingredients where regulatory filings demand structural precision. Impurities from incomplete trifluoromethylation can trigger procurement headaches; our dedicated isolation steps and analytical screening help head off surprises during external audits or filings. Chemists at client sites often report that our standard of documentation matches their own internal QC.
Some manufacturers source less pure material or handle blends containing isomeric impurities. These bring trouble downstream, especially for medicinal R&D, because they risk losing valuable time to separation and additional analysis. By custom tailoring fluorination runs and conducting high throughput GC-MS and HPLC screening, we sharply limit batch-to-batch deviation. End users who have switched to our 3,4,5-Trifluorobenzotrifluoride from generic grades remark on fewer claims and improved workflow.
Fluorinated aromatics demand strict oversight both within production and customer use. We know that mishandled halogenated compounds create persistent environmental pollutants. For this reason, our operational focus includes secondary containment at all storage sites, vapor recovery units on production lines, and effluent neutralization that meets local and international regulations.
The product leaves our facility with full chain-of-custody documentation, so downstream users can trace each lot’s journey and expand their own compliance files. Many of our long-term clients operate under frameworks such as REACH or TSCA. Our seasoned regulatory team manages global compliance, so customers expecting shipment to North America, Europe, or APAC find no unpleasant surprises at import.
Feedback from periodic stakeholder surveys points to strong support for our waste minimization efforts. Non-compliant product or byproducts are destroyed or recycled as permitted, and we regularly publish sustainability metrics in our operational reports. By adopting energy-saving continuous flow techniques, we reduce energy intensity versus older batch models, and inform customers how the ecological footprint of their supply chain improves by choosing our methods.
Collaboration with customers extends beyond a simple shipment. We share best practices on storage, blending, and disposal, and stay connected to R&D teams via secure knowledge exchanges. Many partners call on us for bespoke adaptation, tweaking physical properties or input parameters to streamline their downstream runs. We provide stress-test data, degradation studies, and stability reporting so that customers can plan logistics, holding time, and scaling with minimal uncertainty.
Our position as a direct manufacturer, not a repackager or distributor, means researchers get access to technical staff who design and oversee every lot. Through routine technical support, we receive examples where customers encounter an unexpected bottleneck or impurity during analogue synthesis using 3,4,5-Trifluorobenzotrifluoride. Our technical team addresses these swiftly by consulting historical production records and, where useful, running confirmation experiments in our application laboratories.
For customers in emerging markets or exploratory R&D, our flexibility shines. Whether adjusting packaging format or offering advice on integrating this intermediate in custom synthesis, we anticipate requirements and provide real-world guidance rather than generic documentation. In longer-term supply relationships, we even run co-development projects in cooperation with customer R&D, looking for new, greener techniques to manufacture core intermediates like this compound with less waste and energy use.
Chemists seeking reliable trifluorinated building blocks see 3,4,5-Trifluorobenzotrifluoride as a linchpin in their toolbox. The challenge never rests, since every field—pharmaceuticals, crop protection, advanced materials—keeps pushing the frontiers of molecular complexity, application breadth, and regulatory scrutiny. The future points toward tighter environmental controls and increasing demands for traceability throughout the supply chain. Our continued investment in process improvement, analytical development, and cross-border compliance strengthens our position as a partner for innovative companies seeking both product reliability and responsible stewardship.
Adapting to these forces means our manufacturing team stays proactive. Regular review of raw material sources keeps input quality stable even as markets shift. Real-time monitoring and data analysis tools allow us to spot process drift before it affects downstream users. New generations of fluorinating agents and low-temperature reactors both limit emissions and open new chemistry not possible even a decade ago.
It has become clear that future progress will be shaped not only by what happens inside the laboratory but also by each participant’s commitment to collaboration, safety, and environmental integrity. As more clients move toward carbon footprint accounting and integrated supply networks, our experience delivering 3,4,5-Trifluorobenzotrifluoride at scale—alongside flexibility and support— becomes pivotal for advancing modern chemical research and manufacturing.
3,4,5-Trifluorobenzotrifluoride stands as more than a basic feedstock; it is an engineered intermediate refined by focus, expertise, and continual improvement. Decades of in-house experience, feedback from industry collaborators, and rigorous adherence to environmental and regulatory best practices define our product. As the market demands higher purity, robust supply, and consistent application support, we remain committed to advancing fluorinated chemistry through hands-on knowledge, adaptive production, and the kind of technical support only a true manufacturer can provide.