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3-Fluoro-2-Methoxybenzaldehyde

    • Product Name 3-Fluoro-2-Methoxybenzaldehyde
    • Alias 3-Fluoro-2-methoxybenzalhyd
    • Einecs 823-476-6
    • 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

    315208

    Iupac Name 3-fluoro-2-methoxybenzaldehyde
    Molecular Formula C8H7FO2
    Molecular Weight 154.14 g/mol
    Cas Number 420-08-6
    Appearance Colorless to pale yellow liquid
    Boiling Point 86-88 °C at 15 mmHg
    Density 1.201 g/cm3
    Solubility Slightly soluble in water; soluble in organic solvents like ethanol, ether
    Smiles COC1=C(C=CC(=C1)F)C=O
    Inchi InChI=1S/C8H7FO2/c1-11-8-5-2-3-7(9)6(8)4-10/h2-5H,1H3
    Refractive Index 1.553-1.557
    Flash Point 98 °C
    Synonyms 2-Methoxy-3-fluorobenzaldehyde

    As an accredited 3-Fluoro-2-Methoxybenzaldehyde factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle, 25 g, tightly sealed, hazard-labeled, with chemical name, molecular formula (C8H7FO2), and manufacturer’s details.
    Shipping 3-Fluoro-2-Methoxybenzaldehyde is shipped in tightly sealed containers to prevent leakage and contamination. It is transported as a hazardous material and handled according to relevant safety regulations. Proper labeling, documentation, and cushioning are ensured. The chemical should be kept away from heat, moisture, and incompatible substances during transit.
    Storage 3-Fluoro-2-Methoxybenzaldehyde should be stored in a tightly sealed container, protected from light and moisture, in a cool, dry, and well-ventilated area. Keep away from sources of ignition, heat, and incompatible materials such as strong oxidizers. Label the storage area appropriately and ensure access is restricted to trained personnel equipped with proper safety gear.
    Application of 3-Fluoro-2-Methoxybenzaldehyde

    Applications of 3-Fluoro-2-Methoxybenzaldehyde in Industrial Manufacturing

    As a direct manufacturer with extensive experience in the synthesis and quality control of specialty aromatic intermediates, we supply high-purity 3-Fluoro-2-Methoxybenzaldehyde to customers engaged in targeted high-value industrial fields. Our applications focus strictly on sectors with verified downstream demand, emphasizing regulatory compliance, precise formulation control, established production technology, and documented end-product use.

    1. Pharmaceutical Intermediates: Sartan Antihypertensive Compound Synthesis

    3-Fluoro-2-Methoxybenzaldehyde serves as a key aldehyde building block in the multi-stage synthesis of several sartan-class antihypertensive drug substances. Manufacturers employ this raw material for Suzuki, Buchwald, and amination reactions to obtain critical intermediates en route to API assembly. The chemical’s substitution pattern enables specific binding site optimizations required by these pharmaceutical actives.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • European Pharmacopoeia (Ph. Eur.) monograph requirements for APIs
    • USP-NF General Chapter <1790> for residual solvents
    • 21 CFR Part 211 (FDA cGMP regulations for finished pharmaceuticals)

    Typical usage ratio

    • 5-12% molar ratio as limiting reagent per batch; optimized depending on target sartan derivative and yield targets in batch/continuous synthesis

    Downstream process integration

    • Introduced during Stage 2-3 of multi-step synthesis, typically in Suzuki coupling or reductive amination reactors, with subsequent purification by crystallization or column chromatography before further transformations into API molecules

    Final product types

    • Losartan potassium API
    • Valsartan API
    • Candesartan cilexetil API
    • Pharmaceutical-grade intermediates for further finishing

    2. Agrochemical Active Ingredient Synthesis: Selective Herbicide Intermediates

    Specialty herbicide manufacturers employ 3-Fluoro-2-Methoxybenzaldehyde in the controlled production of novel substituted benzylpyridine and benzothiazole frameworks. Its unique fluoro and methoxy pattern allows downstream synthesis of active molecules with improved activity against grassy and broadleaf weeds, contributing to the design of selective post-emergence active substances.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products
    • REACH Registration (EC 1907/2006) for chemical intermediates
    • ISO 9001:2015 Quality Management System (for precursor control)
    • National pesticide registration requirements (e.g., EPA 40 CFR)

    Typical usage ratio

    • 8-15% by weight of starting aromatic compounds; adjusted depending on target active’s molecular structure and specific crop spectrum in commercial scale syntheses

    Downstream process integration

    • Employed in step 1 or 2 for condensation or cyclization with nitrogenous partners, facilitating substitution on heterocyclic cores prior to halogenation and esterification steps

    Final product types

    • Pyridine herbicide active ingredients (technical grade)
    • Benzothiazole herbicide precursors
    • Pre-emergence and post-emergence crop protection formulations (after downstream finishing)

    3. Fine Chemical Synthesis: Advanced Dye and Pigment Precursors

    Advanced dye and pigment producers utilize 3-Fluoro-2-Methoxybenzaldehyde to prepare tailored colorant intermediates with defined absorption spectra. Through consecutive condensation and oxidative processes, the molecule contributes specific chromophore modifications essential for lightfastness and tone precision in specialty textile and plastic coloration.

    Industry compliance standards

    • OEKO-TEX® Standard 100 (additive usage restrictions)
    • EN 71-3:2019 (Safety of colorants in toys and textiles)
    • ISO 9001:2015 Quality Management System
    • Registration, Evaluation, Authorization and Restriction of Chemicals (REACH) Article 3(8), as an intermediate

    Typical usage ratio

    • 2-8% of total mass in initial dye base formation; fine-tuned based on target chromophore strength, batch size, and compatibility with final solvent or substrate system

    Downstream process integration

    • Coupled with aromatic amines or carbazoles under controlled temperature and pH in condensation reactors, followed by oxidation and optional sulfonation, positioning as an early-stage intermediate prior to final pigment precipitation

    Final product types

    • Anthraquinone and aminophenol dye intermediates
    • High-performance pigments for plastics and fibers
    • Technical colorant blends for inkjet inks

    4. Specialty Fragrance and Flavor Chemicals: Functionalized Aromatic Intermediate

    In the aroma chemicals sector, select manufacturers process 3-Fluoro-2-Methoxybenzaldehyde to construct unique aldehyde motifs incorporated into specialized fragrance bases. Its functional group arrangement enables controlled etherification and selective reduction, producing notes favored in fine perfumery intermediates and flavor formulations not reliant on mass-market vanilla analogs.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards
    • EU Regulation (EC) No 1223/2009 on Cosmetic Products
    • FCC (Food Chemicals Codex) if for flavor intermediates
    • ISO 22716:2007 (Cosmetic GMP guidelines for aroma chemicals)

    Typical usage ratio

    • 0.5-3% relative to base aromatic stock; determined by desired note strength in target fragrance or flavor profile and downstream formulation dilution factor

    Downstream process integration

    • Undergoes etherification or acetalization during the core fragrance intermediate stage, followed by careful reduction or chain elongation; integrated during early olfactory “top note” molecule design and modified prior to blending with other key volatiles

    Final product types

    • Specialty aldehyde aroma intermediates
    • Custom fragrance concentrate bases for fine perfumes
    • Flavor agents for low-dosage inclusion in food essence compounds (under permitted use cases)

    5. Electronic Chemicals: OLED Intermediate Synthesis

    Manufacturers of organic electronic materials incorporate 3-Fluoro-2-Methoxybenzaldehyde as a precision precursor for custom aromatic core units in organic light-emitting diode (OLED) production. Its fluoro group facilitates controlled halogen exchange and subsequent cross-coupling reactions, providing emission-tunable intermediates with improved solubility and device stability characteristics.

    Industry compliance standards

    • JEITA Green Procurement Standard for Electronic Components
    • IEC 61249-2-21 (Halogen-free material requirements)
    • ISO 14001:2015 (Environmental Management System)
    • REACH compliance as a raw material for electronic industry

    Typical usage ratio

    • 1-5% molar ratio to total aromatic content in target emitter layer batch; tuned for emission wavelength and final layer thickness in mass production

    Downstream process integration

    • Enters as a coupling partner in Suzuki or Stille polymerization reactions, generally during early-stage synthesis of OLED monomer building blocks, prior to final device fabrication and thin-film deposition

    Final product types

    • OLED emitter molecules for display panels
    • High-purity aromatic linkers in electronic-grade polymers
    • Performance additives for backplane passivation layers
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    Certification & Compliance
    More Introduction

    3-Fluoro-2-Methoxybenzaldehyde: A Practical Review From Our Production Floor

    Everyday Work With 3-Fluoro-2-Methoxybenzaldehyde

    Crafting 3-Fluoro-2-Methoxybenzaldehyde has given us a front row seat to both the technical and practical aspects that come with manufacturing a fine chemical. Our team works closely with this compound, pouring energy into quality control because any hiccup in consistency can echo through the research projects or formulations relying on a high-purity product. With the model number set as 3F2MBA, we developed production that adapts to requests for grams or kilograms, so laboratories and scale-up campaigns never run dry.

    Understanding the Structure and Its Impact

    This molecule, identified by its fluorine at the 3-position and methoxy at the 2-position on the benzaldehyde ring, shows how tweaking a single atom or group can shift a building block’s behavior and value. Our chemists started with this scaffold because the balance of electron-rich and -withdrawing parts makes it a firm bet in synthesis: it holds up to challenging reaction conditions and still delivers unique selectivity. From flavor chemistry to advanced pharmaceuticals, requests for such variants come in as new molecules move through the discovery pipeline.

    Why Choose 3-Fluoro-2-Methoxybenzaldehyde

    After years on the plant floor, we have learned that minor modifications in a molecule like swapping chlorine for fluorine or moving a methoxy group change more than just a name—they rewrite the chemical’s story. 3-Fluoro-2-Methoxybenzaldehyde offers a sweet spot between stability and reactivity. The fluorine atom boosts resistance to oxidation, which early-stage syntheses love because it kills off some side reactions right from the start. Meanwhile, that ortho-methoxy leans electron-rich, enhancing final product yield in nucleophilic additions, so fewer washes and reworks show up in our QC logs. Without those annoying byproduct peaks, purification always goes faster.

    Lessons Learned In Specification And Handling

    Through batches that number in the thousands, we have fixed and optimized our processing lines. Our production team turns out material with a minimum purity of 98 percent as checked by HPLC and confirmed by NMR. We cut filtration times by keeping crystals fine. Each batch gets packed in brown glass or drums under nitrogen, which stops light and air from nibbling away at its quality. We still find customers in research or production who grew frustrated by residue build-up with other halogenated benzaldehydes; they come to us because our grade simply dissolves cleaner and works better in polar and non-polar solvents. We have tracked which processes are vulnerable to trace byproducts, so we chalk those out during process reviews with buyers who share their downstream plans.

    The Landscape Of Fine Benzaldehydes

    Some buyers ask us to compare 3-Fluoro-2-Methoxybenzaldehyde with other substituted benzaldehydes, including the more common 3-chloro or 4-methoxy versions. We always point out that shifting the fluoro group to position three while keeping the methoxy right next to the formyl group creates a molecular backbone that gives chemists a unique knob to turn in their syntheses. Electrophilic aromatic substitutions take place here where they do not work on para- or meta-methoxy versions, and the fluorine atom sits far enough from the aldehyde to avoid electron density drop-off that hampers some competing products.

    Performance In End Use

    Our partners tackle projects in fragrance intermediates, heterocycle synthesis, and sometimes agricultural chemistry. They care about factors such as lot-to-lot consistency, trace water, and the absence of unwanted halogen byproducts. Most suppliers run into water ingress problems during bottling; even a tenth of a percent extra water gums up subsequent reactions. We made the switch to batch-by-batch dry room packaging after several reports from research labs who noticed stubborn emulsions while working up reactions. That single process change saved valuable time for pharmaceutical chemists conducting long multi-step syntheses. The attention we invest into mapping impurities has turned up side-chain substituted byproducts, which can slip in during careless distillation. Those issues have kept other suppliers’ lots from qualifying for registration batches, which is why we do not skip gas purity checks and fine temperature controls during synthesis.

    What Matters In Model Choice

    The type of benzaldehyde you select matters the moment you scale out of milligram territory. Many customers start with a model like 3F2MBA for its profile: the combination of fluorine and methoxy in adjacent positions tempers reactivity, making it behave in a controlled fashion during Grignard or Wittig reactions. We have seen competitors try to substitute distant-pair isomers, but get unpredictable yields or slow reactions. Several major pharmaceutical companies told us the ortho pairing of methoxy and formyl in 3-Fluoro-2-Methoxybenzaldehyde accelerated their synthetic steps by boosting regioselectivity and suppressing unwanted ring closures.

    Managing Purity And Side Products

    Every batch, no matter how carefully run, comes with a risk of side products. Our experience has shown that strict control of temperature whenever adding fluorine sources keeps phenol and over-fluorinated derivatives below analytical thresholds. During early attempts to scale up, a neighbor site in the industry let heat spike for a few extra minutes and lost tens of kilos to sticky, tar-like impurities. Our plant team learned from that and maintains closed-loop feedback on exotherms, responding with cool-down cycles in seconds rather than minutes. This might sound like overkill, but even one off-spec batch means wasted money, missed deadlines, and a knock to reputation that takes months to repair. Trace acid traces generate pink or yellow hues in the finished product. That’s why each final fill passes UV-Vis checks for color, cutting out borderline material and guaranteeing only the purest product leaves our warehouse.

    The Human Side Of Chemical Manufacturing

    Years in chemical synthesis have taught us that machines, raw materials, and technical knowhow make up only half the story. It’s the collective experience of those who run the reactors, clean the lines, and troubleshoot water leaks at dawn who push through minor failures and keep every batch within specification. Many customers do not see the pains taken by our operators to make sure crystals form at the right time during solvent swaps. That’s why issues such as glass-lining integrity or unexplained solubility shifts never get lost in the shuffle here. Each batch record gets read closely, and we share details with trusted partners about yields, filtration, and the shape of each run.

    Productivity And Customer Solutions

    Manufacturing at scale throws curveballs, often without much warning. Unexpected holiday demand or supply chain hiccups can throw off production rhythm. We always keep buffer stock of 3-Fluoro-2-Methoxybenzaldehyde, and our plant layout allows for quick product line switchover. During a late spring last year, one of our pharmaceutical partners urgently requested an expanded lot. Even with a raw material shortage in global procurement, we pulled off the additional production without making anyone downstream wait—a result only possible with a direct-from-manufacturer setup that skips reseller bottlenecks. Our in-house engineers actively track production metrics for every model. By focusing discipline on things like temperature ramp rate or residue yield, we keep output both high in purity and available at volume for projects that shift fast.

    Choosing Between Closely Related Compounds

    Chemists working in active ingredient research weigh small details in their starting materials. 3-Fluoro-2-Methoxybenzaldehyde finds preference over other halogenated benzaldehydes when reaction planning prioritizes stability at high temperatures or resistance to air and light exposure. Some R&D clients say their move away from 3-chloro compounds came down to handling odors and downstream residue control; the fluoro variant solves these pain points without slowing down bench chemistry. Unlike its meta-methoxy kin, our ortho model sticks to a more predictable pathway under standard synthetic conditions, with fewer surprises in chromatography cleanup.

    Field Feedback And Real-World Adjustments

    We keep the conversation open with those using our chemical. Customers bring up issues big and small, from label residue on glassware to crystal size variations that affect weighing protocols. Over years of operation, we refined both labeling and packaging—thermal transfer prints survive solvents, bottle necks seal tight without breaking under shipping pressure, and inner liners never stick. We even introduced periodic customer checks on delivered batches, offering sample lots that match ongoing production campaigns, which reduces settlement time and builds trust.

    Quality Above Everything

    In the fine chemical industry, you either meet the standard every time or you do not get a call back. Each time we ship a lot of 3-Fluoro-2-Methoxybenzaldehyde, it comes with its complete certificate of analysis: HPLC, NMR, GC trace, moisture, and color, all on file. Our lab and plant teams take pride in trouble-free analytics, since any unexpected peaks cost downstream hours. The warehouse team tracks inventory with batch barcodes, and our recall rate has remained zero for years. We spot-check stability in long-term room temperature storage every season. While others have lost sales due to early decomposition or color drift, we guard against these faults by using new-material packaging and flushing out atmospheric contamination.

    Simplifying Sourcing And Supporting Scalability

    Many firms have horror stories from waiting for overseas shipments or chasing down missing documents. Dealing directly with the manufacturer changes all that. Our team answers technical queries and compliance questions straight from the source. Several of our best partners started as small-scale buyers, then grew with us without ever needing to change suppliers because we flex output in pace with their programs. We build long-term lot traceability for projects expecting scale-up or registration, and share analytical benchmarks so R&D teams and production managers have what they need on file well before audits.

    Cross-Industry Application And Support

    We regularly supply 3-Fluoro-2-Methoxybenzaldehyde to pharma, agchem, flavor and fragrance, and specialty chemical houses. Each industry wants something a little different: low halogen background, a full analytical run, or assurance that ethical production standards get met. Our LIMS tracks every step, linking operator logs with computer-monitored records. Regular facility audits by clients and third-party reviewers keep our ISO systems sharp, which makes us ready for all sorts of customer questions—especially as regulatory requirements change. Science does not stop for paperwork, so our QA and RA teams work together to keep documentation in sync and respond quickly when buyers update their compliance lists.

    Suggestions For Buyers Considering 3-Fluoro-2-Methoxybenzaldehyde

    If you'd like to add 3-Fluoro-2-Methoxybenzaldehyde into your lineup, a few areas stand out for review before purchase. Check how the compound behaves alongside your solvents: our material dissolves well in acetone, methanol, and ether, but slightly less quickly in water—still above 95 percent in most cases. If you plan secondary reactions into nitriles, acids, or azoles, this scaffold has shown excellent compatibility in both bench and kilo-scale builds. Some have asked us about metal-catalyzed routes—Pd and Ni catalysis run smoothly, so long as the catalyst beds remain fresh and the product gets passed through an alumina plug to mop up trace metals.

    Lowering Barriers to Lab Productivity

    Many researchers struggle with consistent sourcing, and downtime from waiting on high-purity intermediates can bottleneck expensive project schedules. With our straightforward order process and direct access to production staff, delays rarely happen. Every order leaves our plant with stability and hazard labeling matching current ICH guidelines. Technical support is available by direct line with chemists who know the synthesis inside and out—no bouncing between sales and engineers or waiting for third-party clarification.

    The Real-World Difference

    3-Fluoro-2-Methoxybenzaldehyde may look like another aromatic intermediate at first glance, but on the floor and in the bottle, real distinctions become evident. The fused reactivity profile lets it play key roles in routes that would stall or generate unwanted byproducts if run with less tailored analogues. Well-stocked inventory, world-class analytics, and honest, expert advice separate this compound—and us as its manufacturer—from the broader crowd in the market.

    Continuous Improvement And Future Focus

    We track what works and what could improve—fresh eyes find process bottlenecks, new catalysts, or green solvent swaps. Our in-house R&D team regularly proposes tweaks to boost sustainability or cut batch cycle time. One recent effort successfully dropped our solvent use per kilo by 20 percent; those savings pass to customers while cutting the environmental impact of the chemical industry. We have invested in both process automation and staff training, giving our team the best tools to deliver quality and reliability that laboratories and production chemists value for high-stakes research and manufacturing.

    Closing Thoughts From The Manufacturing Floor

    All told, choosing 3-Fluoro-2-Methoxybenzaldehyde brings real value for projects demanding tight control over purity, yield, and performance. We listen closely, think ahead, and build our operation to solve problems—so our buyers focus on chemistry, knowing their supply stands strong behind them. The work never ends. Each bottle filled, shipped, and used in a new synthesis writes another page in what our team produces every day, with pride and care, backed by practical experience few others can claim.