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HS Code |
620573 |
| Cas Number | 446-67-7 |
| Iupac Name | 1-(4-fluorophenyl)propan-2-one |
| Molecular Formula | C9H9FO |
| Molecular Weight | 152.17 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Boiling Point | 233-235°C |
| Melting Point | -8°C |
| Density | 1.097 g/cm³ |
| Flash Point | 110°C |
| Refractive Index | 1.521 |
| Solubility In Water | Slightly soluble |
| Smiles | CC(=O)CC1=CC=C(C=C1)F |
As an accredited 4-Fluorophenylacetone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 250 grams of 4-Fluorophenylacetone is packaged in a sealed amber glass bottle, labeled with safety information and chemical identifiers. |
| Shipping | 4-Fluorophenylacetone is shipped in tightly sealed, chemically-resistant containers to prevent leaks and contamination. It must be handled and transported according to local and international regulations for hazardous chemicals, typically via ground or air freight. The package should be clearly labeled, protected from heat and direct sunlight, and accompanied by the proper safety documentation. |
| Storage | 4-Fluorophenylacetone should be stored in a tightly sealed container, away from direct sunlight, heat sources, and moisture. Keep it in a cool, dry, and well-ventilated area, preferably in a dedicated chemical storage cabinet. Ensure the area is secure and access is limited to authorized personnel. Clearly label the container and follow all relevant safety and regulatory guidelines. |
Applications of 4-Fluorophenylacetone in Industrial Manufacturing4-Fluorophenylacetone serves as an essential building block in advanced organic synthesis within the chemical industry. Our manufacturing controls ensure consistent quality, enabling precise chemical transformations across diversified downstream segments. Below are the primary industrial application scenarios based on direct feedback from formulation teams, process developers, and regulatory audits. 1. Pharmaceutical Intermediate SynthesisManufacturers in the pharmaceutical sector routinely specify 4-Fluorophenylacetone as a core intermediate for the production of selective active pharmaceutical ingredients (APIs), specifically those incorporating substituted aryl ketones. The material supports introduction of fluorinated aromatic motifs via alkylation or condensation steps. Our QC processes confirm batch uniformity and avoid cross-contamination, supporting GMP batch integrations. Process chemists validate each lot for strict trace impurities before scaling to pilot or commercial manufacturing. Industry compliance standards
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2. Agrochemical DevelopmentResearch divisions in agrochemical manufacturing employ 4-Fluorophenylacetone for synthesis of custom pesticides and advanced herbicides involving fluorinated aryl moieties. Integration of the starting ketone improves environmental stability of resulting crop protection agents. Our technical support team collaborates with formulation chemists for route screening and impurity control, ensuring by-product minimization throughout the entire reaction cascade. Industry compliance standards
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3. Fragrance and Aroma Compound ManufacturingProduction facilities in the flavor and fragrance industry utilize 4-Fluorophenylacetone as a precursor during synthesis of aromatic ketones and aldehydes used in fine fragrance blends. Its fluorinated aromatic ring introduces novel olfactory notes, and narrowly controlled process conditions maintain purity while avoiding olfactory off-notes. Technicians conduct residue analysis and monitor for trace solvents or unwanted side-products at each batch preparation. Industry compliance standards
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4. Specialty Polymer and Resin SynthesisAdvanced materials manufacturers select 4-Fluorophenylacetone when synthesizing fluorinated monomers that confer elevated thermal and chemical resistance to specialty polymers, including adhesives and high-performance coatings. It enters functional group modification reactions for creation of ketone-functional resins, ensuring tight molecular weight distribution and consistent processability as verified by our in-process controls and analytical support. Industry compliance standards
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5. Fine Chemical Research and Custom SynthesisContract research organizations (CROs) and specialty chemical labs integrate 4-Fluorophenylacetone as a key scaffold in the rapid synthesis of novel compounds for custom projects, patent development, and small-batch route scouting. Our manufacturing team delivers detailed COA and batch traceability, supporting researchers’ regulatory submissions and method validation. Each order includes supplemental analytical profiles for structure confirmation and impurity tracking. Industry compliance standards
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Competitive 4-Fluorophenylacetone prices that fit your budget—flexible terms and customized quotes for every order.
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We have spent many years in the chemical manufacturing industry, weighing the need for purity, efficiency, and consistency in every batch. Among countless chemical substances pouring through our reactors, 4-Fluorophenylacetone stands out for its adaptability and key role in synthesis. This compound, known by its structural designation as 1-(4-fluorophenyl)propan-2-one, is much more than a simple acetone derivative. Our drive to perfect its production comes from years spent observing both subtle variations in demand and evolving technical needs from clients working in pharmaceuticals, agrochemicals, and advanced research.
Few chemicals in our catalog fuel such lively discussions in the lab. 4-Fluorophenylacetone combines structural flexibility with a precise functional group arrangement, giving it strength as a starting material or intermediate. The presence of the fluorine atom in the para position of the phenyl ring changes not just the chemical’s reactivity, but also its downstream effects, which influences solubility, stability, and even how certain end products behave.
Chemists seek out this molecular structure for situations where subtlety pays dividends. That fluorine atom brings both resistance and selectivity, making 4-Fluorophenylacetone indispensable in the creation of specialty compounds. We see it go out the door destined for laboratories developing new APIs that benefit from the improved metabolic profile resulting from the fluorinated backbone.
Our production team never takes shortcuts, knowing quality starts in the raw material drum and ends with a certified analysis. 4-Fluorophenylacetone’s unique oxidation profile, boiling point, and color make it both a challenge and a prize to prepare. Years of tweaking flow rates, refining purification steps, and building in redundancy in our reactors have taught us what a difference even a half-degree in temperature can make. We now routinely attain high purity, and every batch faces inspection for residual solvents, isomers, and trace materials.
A typical batch receives in-depth scrutiny with methods such as GC-MS or NMR spectroscopy. This close inspection helps us meet both regulatory expectations and the higher standards set by exacting clients in medicinal chemistry and material science sectors. Clients have told us purity and consistent physical properties translate to their teams being able to reproduce results, avoiding costly setbacks in development timelines.
Over time, our product evolved from an experimental run to a robust, scalable offering. At room temperature, 4-Fluorophenylacetone is a clear liquid, subtly different in odor compared to non-fluorinated analogs. The boiling point, generally measured around 102–103°C at reduced pressure, supports efficient distillation—an important step, since any leftover starting materials or by-products can disrupt sensitive follow-up chemistry.
Professional chemists appreciate the consistent fluoro content, which we verify batchwise to avoid residues or unpredictable shifts in physical behavior. Small impurities, sometimes ignored by less attentive producers, can drastically affect reaction yields or color in downstream steps. Our output has settled at purity levels high enough to support both pilot and commercial-scale synthesis, thanks to ongoing investments in distillation and analytical infrastructure.
Concentration, water content, and color—often a pale yellow—get monitored in every lot. These seemingly minor attributes have outsized impact in certain syntheses, especially when customers require precise stoichiometry and reaction control. Days spent working in labs taught us that careless variations in input material can torpedo an otherwise promising project.
Many clients considering various phenylacetones express curiosity about real-world differences. Over the years, our technical support teams have logged hundreds of discussions about structure-activity relationships and downstream byproduct issues. 4-Fluorophenylacetone often offers improved performance over unsubstituted phenylacetone, especially where electrophilic aromatic substitution might cause issues in subsequent steps. The para-fluorine not only resists undesired side-reactions but also stabilizes certain intermediates.
Compared to molecules like 4-chlorophenylacetone or 4-methylphenylacetone, the fluoro group’s electronegativity and modest steric footprint make a noticeable difference. Fluorine modifies electron density in subtle ways, improving outcomes in Grignard additions or reductive aminations. It resists hydrolysis far better than a methyl or methoxy group, proving valuable in both humid storage and aqueous reaction conditions.
We sell to customers developing pharmacologically active molecules, agrochemical agents, and even niche flavors and fragrance precursors. In pharmaceuticals, 4-Fluorophenylacetone is prized for incorporation into new chemical entities where metabolic stability counts. The fluoro group influences a compound’s fate within biological systems, imparting improved oxidative resistance and sometimes enhancing bioavailability.
Not every supplier understands the details of where the product lands, but as a manufacturer we are often invited into our client’s discussions about next-generation synthesis or process troubleshooting. We’ve advised on scale-up to supply kilogram or ton quantities, modifying process variables to align with specific downstream needs. For every suggestion, we pull from our own experience handling, storing, and shipping this compound safely and efficiently.
Real-world reliability comes from actively investing in process safety and inventory control. Volatile feedstock prices or logistical bottlenecks rarely catch us unprepared. We maintain core stock levels and hold raw materials in anticipation of periodic surges tied to seasonal production, regulatory shifts, or industry innovation. We have tailored our storage and shipping procedures to meet strict local and international regulatory standards, making it easier for partners to meet their own obligations.
We regularly update batch records and provide comprehensive documentation. This level of traceability is something clients say they have grown to expect from established manufacturers. Having tracked client feedback for years, one trend is clear: reliable supply, open communication, and transparent quality procedures cut through uncertainty in a way that third-party brokers simply can’t match.
Manufacturing 4-Fluorophenylacetone responsibly takes more than technical know-how. Waste streams, emissions control, and solvent management demand daily diligence. We operate with an understanding that regulatory compliance and corporate responsibility go hand in hand. Closed-loop solvent recovery, careful waste categorization, and investment in emissions abatement enable us to remain an accepted supplier across a globally connected business landscape.
We keep environmental impact front of mind, not only because of regulatory mandates but because of a shared commitment to long-term business sustainability. Our production facility integrates energy and resource monitoring at each stage, seeking to lower both operational costs and environmental burden. We strive for greener alternatives in solvents and minimize waste wherever possible—lessons learned not from newsletters, but from years spent facing the very real costs of waste disposal and environmental audits.
Our ability to supply 4-Fluorophenylacetone reliably comes from treating it not as a mere line item, but as a product shaped by constant monitoring, hands-on troubleshooting, and honest feedback loops. Over the years, research groups and large process chemists have shared stories of lost time and scrapped synthesis due to bulk chemical with inconsistent properties. In responding, we've realized how critical it is to communicate openly and empower clients with the clarity they need for planning.
Companies come back to us not simply for a certificate of analysis, but for advice and rapid adjustments as their projects evolve from lab bench to pilot plant. Longevity in this role has come through professional relationships, grounded in a shared commitment to quality and forward-looking solutions. Approaching the craft as more than the sum of its parts keeps our team connected with the needs that turn raw chemicals into living products.
Nothing replaces the years of “hands-on” interaction with production challenges and raw material quality issues. Whether dealing with a subtle impeller leak, recalibrating an inline pH probe, or chasing down an unexpected trace contaminant, direct intervention shapes tomorrow’s product quality. Our team’s willingness to experiment with better glassware designs, solvent blends, or temperature profiles pays off in the consistency clients demand from premium suppliers.
Production doesn’t end with synthesis and packaging. We prioritize safe, reliable transit and have seen firsthand how small details—like inert gas blanketing or minimizing headspace in drums—prevent unpredictable changes during shipment. Understanding end-user requirements, we communicate storage best practices and rapidly respond to any requests for further quality data. We know a good product is one that arrives ready to use, with all uncertainties addressed up front.
Given its structure, 4-Fluorophenylacetone serves as a launching pad for innovation. Our colleagues across pharmaceutical, agricultural, and specialty chemical sectors push boundaries with this molecule as a reliable starting point. In API development, the compound’s fluorinated motif often maps onto lead candidates showing the right binding and metabolic profile. In our own labs, we have witnessed creative derivatization strategies that begin with a vial of this chemical.
Fluorination alters hydrophobicity and electron distribution, giving medicinal chemists a valuable tool for influencing absorption and metabolic stability. Over the years, the data shows that fluorinated analogs often outlast or outperform their non-fluorinated counterparts in real bioassays. Our supply chain supports this experimentation by holding regular quality reviews and keeping open channels for customer requests, technical tweaks, or urgent scale-ups.
Outside pharma, 4-Fluorophenylacetone’s profile makes it a valued player in flavors, fragrances, and agrochemicals. Subtle shifts in volatility, aroma, and reactivity broaden the creative palette for formulation chemists. We keep pace with application trends, offering technical guidance and even customizing specifications to help customers explore new synthesis windows.
There’s value in working with a team that has faced—and solved—the spectrum of challenges in making and delivering 4-Fluorophenylacetone. Our process engineers, quality analysts, and logistics coordinators work side by side to support evolving chemical market needs. We answer tough questions from both seasoned researchers and new process developers, sharing not just data but also lessons learned from our own journey in building practical, scalable processes.
Clients benefit from a predictable foundation for their critical projects, reducing risk and smoothing the way for breakthrough science or reliable production. We see our role not as a stopgap solution, but as a contributing partner in creating value over the long haul.
Markets fluctuate, but the demand for quality, transparency, and on-time supply holds steady. The complex regulatory and scientific environment puts a premium on chemical sourcing that delivers traceability and predictability. 4-Fluorophenylacetone represents a synthesis of production rigor, environmental stewardship, and market awareness.
As manufacturers, we engage with global clients to refine protocols and push boundaries on both safety and performance. Our experience underscores that well-made raw materials have lasting implications down the line, helping innovators avoid setbacks and accelerate progress. With decades invested in refining both process and partnership, we see each order as a vote of trust—and a challenge to improve.
Technical experience, factory-level oversight, and responsive support remain our hallmarks as suppliers of 4-Fluorophenylacetone. Success stories from clients turning their ideas into market-winning products owe a piece of their result to the groundwork we’ve laid behind the scenes. Whether your focus is rapid screening of new analogs or scaling a proven process for industrial production, you gain from a supply chain engineered for confidence and continuity.
With each batch, we demonstrate what attention to detail and real-world learning deliver. The industry advances when materials, knowledge, and intent align. We welcome the next round of challenges—and take pride in being part of what customers build from reliable beginnings.