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4-Fluorobenzyl Alcohol

    • Product Name 4-Fluorobenzyl Alcohol
    • Alias p-Fluorobenzyl alcohol
    • Einecs 208-950-7
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    735025

    Name 4-Fluorobenzyl Alcohol
    Cas Number 459-56-3
    Molecular Formula C7H7FO
    Molar Mass 126.13 g/mol
    Appearance Colorless liquid
    Purity Typically ≥98%
    Boiling Point 205°C
    Melting Point −5°C
    Density 1.16 g/cm³
    Refractive Index 1.517
    Solubility In Water Slightly soluble
    Smell Aromatic

    As an accredited 4-Fluorobenzyl Alcohol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle, 100 mL, tightly sealed with a screw cap, labeled "4-Fluorobenzyl Alcohol, 99% purity," with hazard warnings.
    Shipping 4-Fluorobenzyl Alcohol is shipped in tightly sealed containers, protected from moisture and light. It is transported as a chemical reagent, typically under ambient temperature. Follow all regulatory guidelines for handling and labeling. Ensure packages are properly secured and compliant with relevant safety and transport regulations for hazardous materials.
    Storage 4-Fluorobenzyl alcohol should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as strong oxidizers. Protect from direct sunlight and moisture. Ensure appropriate labeling and keep away from food and drink. Store at room temperature and follow local regulations for hazardous chemical storage.
    Application of 4-Fluorobenzyl Alcohol

    Applications of 4-Fluorobenzyl Alcohol in Industrial Manufacturing

    4-Fluorobenzyl Alcohol serves as a critical intermediate in multiple high-value chemical sectors. Its unique fluorinated structure supports synthesis pathways where precise control of reactivity is mandatory. As the original manufacturer, we provide consistent quality and traceability for integration into downstream formulations and processes across key industrial segments.

    1. Pharmaceutical Intermediates for Active Ingredient Synthesis

    Major pharmaceutical companies rely on 4-Fluorobenzyl Alcohol in the multi-step synthesis of fluorinated drug substances. Its controlled reactivity helps achieve high-purity intermediates, often used for anti-infectives, CNS modulators, and cardiovascular therapies. Process development teams use it during early-stage route scouting, supporting laboratory, pilot, and full-scale commercial batch production, where strict compliance to GMP standards and trace impurity profiles is mandatory.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients
    • USP General Chapter <797> Pharmaceutical Compounding
    • European Pharmacopoeia (Ph. Eur.) Monographs for intermediates
    • FDA 21 CFR Part 211 (Current Good Manufacturing Practice for Finished Pharmaceuticals)

    Typical usage ratio

    • 0.2 – 1.5 equivalents relative to the target substrate, adjusted based on desired conversion and pathway stage

    Downstream process integration

    • Enters as an aryl alcohol building block during early or mid-stage coupling or alkylation reactions in multi-step organic synthesis

    Final product types

    • Fluorinated APIs for neurology, oncology, and anti-viral drugs
    • Registered pharmaceutical intermediates
    • Laboratory-scale reference compounds
    • Precursor units for prodrug development

    2. Agrochemical Synthesis for Selective Herbicides & Fungicides

    Formulation chemists in agrochemical manufacturing use 4-Fluorobenzyl Alcohol as a building block for new-generation, high-activity herbicide and fungicide molecules that require selective fluorination to optimize field stability and bioactivity. Syntheses typically demand strict batch reproducibility and documentation for regulatory trials and international registration. Use in this sector mandates continuous monitoring of batch history and by-product traceability.

    Industry compliance standards

    • ISO 9001:2015 for Quality Management Systems in chemical manufacturing
    • OECD Guidelines for the Testing of Chemicals (for active ingredients)
    • FAO Specification Guidelines for Pesticide Ingredients
    • REACH Registration, Evaluation, Authorisation and Restriction of Chemicals (European Chemicals Agency)

    Typical usage ratio

    • 5–15% by weight of targeted synthetic intermediates, with adjustment based on desired active loading and crop-specific efficacy

    Downstream process integration

    • Used in nucleophilic aromatic substitution and esterification steps during kilo-lab and commercial synthesis of new agrochemical AIs

    Final product types

    • Post-emergent and pre-emergent herbicide actives
    • Fluorinated triazole and strobilurin fungicides
    • Stabilized technical concentrates for seed treatments
    • Patent-protected agrochemical intermediates

    3. Fine Chemicals for Liquid Crystal Display (LCD) Monomer Manufacture

    Producers of specialty monomers for LCD and OLED display segments use 4-Fluorobenzyl Alcohol to enable precision fluorination, improving dielectric properties and thermal range of final monomer blends. The material meets strict purity requirements set by major electronics firms, with batch testing for metal traces and consistent halogen content. Integration at the monomer level supports end-client requirements for high-resolution, durable displays and photonic devices.

    Industry compliance standards

    • JEITA Standard CP-4211 for display materials quality
    • IEC 61249-2-21 (Halogen-free materials for baseboards)
    • RoHS Directive 2011/65/EU for hazardous substance limits
    • Restricted Substance regulations in downstream electronics supply chains

    Typical usage ratio

    • 0.1–0.4 molar equivalents in co-polymerization or end-capping reactions, tailored to polymer backbone structure

    Downstream process integration

    • Reacted during functionalization steps in high-purity monomer synthesis, prior to final polymerization for films and layers

    Final product types

    • Polymerizable fluorinated monomer resins
    • Intermediate materials for liquid crystal cells
    • OLED emissive and transport layer additives
    • Photonic materials for advanced display panels

    4. Fragrance and Aroma Chemical Synthesis for Fine Fragrances

    Specialty fragrance ingredient makers employ 4-Fluorobenzyl Alcohol for targeted synthesis of benzyl-derived aroma compounds. Its selective fluorination allows formulation of signature scents with improved stability and distinctive olfactory notes. Adherence to industry and food safety guidelines is essential, with tight analytical control to monitor allergenic and solvent residues before downstream blending in perfumery bases.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards and Guidelines
    • EU Cosmetics Regulation (EC) No 1223/2009
    • ISO 9001:2015 for fragrance ingredient production
    • Food Chemicals Codex (FCC) if intended for flavor applications

    Typical usage ratio

    • 3–20% by weight per specialty aroma synthetic batch; varies with desired intensity and note structure

    Downstream process integration

    • Introduced during aldehyde, ester, or etherification reactions to create unique fragrance molecules before blending in compounding centers

    Final product types

    • High-purity aromatic alcohols for fine perfumes
    • Custom fragrance components for home and personal care
    • Stable aroma bases for candle and air freshener manufacturing
    • Synthetic intermediates for flavor and fragrance R&D

    5. Fluorinated Polymer Additive Manufacturing

    Producers of engineering plastics and specialty fluoropolymers introduce 4-Fluorobenzyl Alcohol as a functional group donor to tailor polymer properties such as chemical resistance, hydrophobicity, and UV stability. Standard operating procedures mandate batch-to-batch consistency in fluorine content, particle size, and residual solvent levels to maintain extrusion and molding performance in end-use products.

    Industry compliance standards

    • ASTM D638 for polymer tensile properties
    • UL 94 for flammability grading of plastics
    • ISO 9001:2015 for production traceability
    • RoHS and REACH for restricted substances in plastics

    Typical usage ratio

    • 0.5–2.5% by weight per polymer batch; adjustments made for property optimization in application-specific formulations

    Downstream process integration

    • Added during melt mixing or reactive extrusion steps as a co-monomer or chain modifier prior to pelletization and compounding

    Final product types

    • Fluorinated engineering resins for automotive and electronics
    • Custom compounding pellets for extrusion
    • Specialty coatings for industrial and consumer goods
    • Processed polymer masterbatches
    Free Quote

    Competitive 4-Fluorobenzyl Alcohol prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    4-Fluorobenzyl Alcohol: A Reliable Solution Supported by Decades of Manufacturing Experience

    From Raw Material to Fine Chemical—Understanding 4-Fluorobenzyl Alcohol

    In the specialty chemicals industry, the importance of reliable intermediates never fades. Among the diverse benzyl alcohol derivatives, 4-Fluorobenzyl Alcohol draws attention for its versatile chemical characteristics and vital function in synthesis. As an established manufacturer, we've built our expertise over years of hands-on production, continually refining process control, purity benchmarks, and technical support for partners in pharmaceuticals, agrochemicals, and other industries.

    This compound, recognizable by its para-position fluorine atom on the aromatic ring, brings unique features compared to plain benzyl alcohol or other halogenated variants. Fluorine’s influence on reactivity is never trivial: it can enhance metabolic stability and alter compound polarity, which often proves valuable for those pursuing new active ingredients or intermediates. Over the last decade, demand for 4-fluorinated building blocks has grown steadily, and our production processes have adapted to meet increasingly strict quality and sustainability standards.

    Assessing the Role of 4-Fluorobenzyl Alcohol Across Industries

    Every kilogram of 4-Fluorobenzyl Alcohol that leaves our facility embodies a careful balance between cost efficiency, regulatory compliance, and customer requirements. In our daily work, we handle bulk manufacturing, kilo-lab support, and tailored packaging layouts, supporting partners ranging from well-known pharma majors to innovative start-ups and university labs. The most frequent usage of this compound centers on its role as an intermediate. Researchers and chemists find that the presence of the para-fluoro group can fine-tune molecular properties—pushing reaction selectivity or helping develop nonreactive analogs suitable for lead optimization in medicinal chemistry projects.

    As we have seen, 4-Fluorobenzyl Alcohol frequently fits into synthetic sequences where selective transformations matter—such as alkylations, etherification, or conversion to more complex fluorinated derivatives. Production teams in our plant appreciate the compound’s relatively straightforward work-up after reaction and its determined shelf life, which reduces risk of product degradation during transportation or storage. Our clients often share feedback after using our batches, citing consistent assay values and color purity as crucial factors for their own manufacturing timelines and downstream process repeatability.

    Key Differences: 4-Fluorobenzyl Alcohol vs. Standard Benzyl Alcohols

    Most chemists have worked with the classic benzyl alcohol at some point, given its common presence in pharmaceutical and fragrance applications. What separates 4-Fluorobenzyl Alcohol from these more basic compounds comes down to chemical behavior and end-use performance. The para-fluoro substituent introduces electron-withdrawing effects, modifying the aromatic ring’s reactivity profile. In practical terms, this means you can direct chemoselective transformations with greater predictability, and sometimes lower side-product formation.

    During scale-up, it also helps to note that this molecule’s physical and chemical handling offers specific advantages. Our engineering team has worked hard to optimize distillation columns and crystallization steps, especially since fluorinated compounds can demand unique material compatibility. We routinely sample and test every batch, ensuring the specification targets of ≥99% purity and tight control over organic and inorganic impurities. Customers often notice that our 4-Fluorobenzyl Alcohol provides cleaner conversions in downstream oxidation, esterification, or halogenation reactions, compared to less refined alternatives.

    Specifications Grounded in Operational Rigour

    Quality and reproducibility depend on specification—not just regulatory requirements, but operational discipline built from daily factory experience. Each batch is produced to internal standards that draw on both international guidelines and ongoing dialogue with frontline users. The GC purity specification (often 99% or higher) and moisture content reflect the cumulative effort of our staff in analytical labs and on the workshop floor. Over the years, we have encountered and overcome various manufacturing obstacles: bottlenecking in purification, solvent residue management, equipment fouling, and strict odor control. Each lesson learned has shaped not only our protocols but our ability to deliver what complex chemical processes require.

    Packaging forms an essential piece of this value chain. We work closely with logistics partners to ensure every drum or small pack remains secure during transit. For those scaling new processes or working on early-stage R&D projects, we can offer customized sampling, repackaging, or technical documentation support. Sometimes, smaller molecules like 4-Fluorobenzyl Alcohol get overlooked in favor of more 'exciting' building blocks, but in reality, their consistent performance forms the backbone of many innovative discoveries.

    Why Purity and Traceability Matter in Practice

    People sometimes underestimate how much trouble minor impurities can cause downstream. Early on, we learned that even trace halide or moisture contamination in 4-Fluorobenzyl Alcohol often causes trouble with catalytic chemistry or heat-sensitive transformations. That’s why each delivery leaves our plant accompanied by a thorough batch record and traceable COA, covering everything from appearance and melting point to detailed chromatographic data.

    In the pharmaceutical sector, process transfer often hinges on analytical reproducibility—the ability to achieve the same result in-house and externally, batch after batch. Our clients share how even a small deviation from stated specs can impact yield, process safety, or regulatory acceptance. To meet these needs, we run regular cross-comparisons and participate in third-party audits. The real-world value of such diligence goes beyond numbers: it builds trust, speeds up development time, and reduces cost overruns caused by unplanned troubleshooting.

    Sustainability and Evolving Manufacturing Approaches

    For many years, fluorinated compounds posed challenges not just in chemistry, but in environmental impact. As regulations and customer expectations shift, we have invested heavily in clean manufacturing technologies. Solvent recovery, improved waste handling, and rigorous VOC monitoring now form standard practice throughout our facility. With 4-Fluorobenzyl Alcohol, hazardous raw materials and waste minimization remain top priorities. We have switched to greener reaction conditions where possible, optimizing workflow to cut down hazardous side streams.

    From a business perspective, these moves drive both efficiency and lower regulatory risk. Our team frequently reviews new guidelines and industry research to stay ahead of requirements, and we support customers with technical data during audits or ESG evaluations. Fluctuating energy prices, raw material constraints, and tightening international controls on fluorinated organics all push us to innovate further, not just for compliance but for long-term business continuity.

    Being a Manufacturing Partner, Not Just a Supplier

    Decades spent in the fine chemical industry have taught us that open channels with end-users help address problems before they snowball. Many times, process engineers or synthetic chemists call us with feedback or unexpected hurdles. For instance, one client highlighted filtration difficulties due to minor batch variation. We went back to our process logs, isolated the variable, and made a production adjustment so future lots exactly matched their needs.

    Our technical support staff routinely assist with scale-up advice, impurity troubleshooting, and safe handling guidance. Fluorinated aromatics in particular can interact differently with standard reagents and equipment, so real-world advice and shared technical data make a difference. Building this kind of relationship takes time, trust, and genuine interest in customer success—not just moving inventory off the shelf.

    Comparisons With Other Halogenated Benzyl Alcohols

    In the extended family of halogenated benzyl alcohols, the difference introduced by the para-fluoro position stands out. While chlorinated or brominated analogs alter chemical reactivity in various ways, fluorine tends to push outcomes in a more subtle—or sometimes more robust— direction. This variation opens up broader synthetic possibilities. For example, fluorinated products often display enhanced metabolic resistance, making them attractive for pharmaceutical R&D. Chlorinated or brominated compounds may see greater restrictions in supply chain or environmental safety owing to byproduct handling.

    Our manufacturing protocols have grown to accommodate this complexity. Each halogen presents unique handling and disposal requirements, and the smaller size and polarizability of the fluorine atom allows for gentler processing and storage. Many active pharmaceutical ingredients or specialty materials with strict regulatory routes call for non-chlorinated, high-purity intermediates, so we keep our 4-Fluorobenzyl Alcohol production lines tightly segregated. Engineers and chemists who have struggled with off-specification runs in chlorinated benzyl alcohols often report more consistent performance from the fluorinated version, especially in redox processes or coupling reactions.

    Addressing Practical Challenges in Production and Packaging

    Scaling up a fine chemical from laboratory flask to commercial reactor involves practical issues not visible in the literature. 4-Fluorobenzyl Alcohol benefits from its moderate boiling point and manageable viscosity, which support both solvent and solvent-free processes. Our operations crew has fine-tuned agitation, temperature hold times, and solvent choices to cut contamination and maintain high throughput.

    Packaging for shipment, especially for sensitive pharmaceuticals or international logistics, calls for careful engineering. We’ve adopted best practices learned by failing, fixing, and refining over years: using tailored liners and vapor barriers for small-scale orders, ensuring fast turnarounds for high-volume customers, implementing traceable seals, and working with reliable partners to meet regional shipping rules. Such attention pays off directly in fewer rejected shipments, lower insurance claims, and better customer retention.

    Safety, Handling, and Compliance in Everyday Operations

    Working on the front lines of bulk chemical production, our teams have to account for both acute and chronic risks. For any new run of 4-Fluorobenzyl Alcohol, the group completes a hazard review focusing on reactivity, spills, and exposure. While this compound poses fewer issues than more volatile or toxic aromatics, real-world experience tells us to respect any material at scale. Through practical, continuous training, process automation, and routine inspections, we reduce incidents and support a culture where questions and improvement are encouraged.

    On the compliance front, legal obligations drive documentation, process validation, and record keeping. We maintain transparent practices honed over years of regulatory interactions with global health authorities and customs officials. Connections with downstream partners help us keep reference standards aligned across borders, and all shipment documentation travels with product for client peace of mind.

    Supporting Customer Innovation Through Supply Chain Stability

    From small kilo-lab lots to frequent bulk shipments, reliable access to high-quality 4-Fluorobenzyl Alcohol helps companies move from R&D pipeline into real-world application. Nobody wants supply interruptions or unknown variability. Our recordkeeping, direct sourcing of key precursors, and long-standing relationships with transportation and warehousing partners form the backbone of that stability. These investments sound mundane, but they form the basis of trust required for new technology launches or product line expansions.

    As manufacturing moves toward single-use equipment and continuous flow systems, our product consistency and transparency can be a key enabler. More and more, partners need easily traceable materials, third-party verification, and detailed impurity profiles. We update supporting documents regularly, reflecting changes in global standards and customer expectations, whether relating to shelf life, impurity fingerprinting, or safety assessment.

    Continuous Improvement: Driving Value Beyond the Molecule

    With every new production campaign, our goal remains: deliver a material that stands up to scrutiny in the lab or plant, and also helps advance our customers’ research and development. To achieve this, we keep our teams updated, encourage feedback, and invest in both equipment and people. From online monitoring tools to digital inventory management, these steps cut downtime, boost traceability, and allow us to react quickly to evolving industry requirements.

    Over time, this steady focus on detail lets us avoid the hidden costs that ripple through downstream processes: delayed launches, unstable yields, missed batch slots. In the fine chemicals field, hundreds of moving parts make every project unique, and small variances in input quality can trigger major setbacks. By keeping 4-Fluorobenzyl Alcohol at a high and reliable standard, we empower scientists, engineers, and formulators to think bigger and push boundaries without worrying about the basics.

    Final Thoughts From the Factory Floor

    Our long history with 4-Fluorobenzyl Alcohol comes down to real-world lessons: get the details right, engage with users, and always plan for the unexpected. Specialty chemicals like this remain unsung heroes in many industries, and the best results require discipline and care from start to finish. As synthetic trends shift, and as new regulatory and technical requirements emerge, we keep innovating our methods—because our partners count on us to deliver not just a chemical, but a foundation for new ideas.