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HS Code |
466627 |
| Chemical Name | 2-Methoxybenzyl Chloride |
| Synonyms | o-Anisyl chloride, o-Methoxybenzyl chloride |
| Molecular Formula | C8H9ClO |
| Molecular Weight | 156.61 g/mol |
| Cas Number | 2216-32-6 |
| Appearance | Colorless to pale yellow liquid |
| Boiling Point | 232-234 °C |
| Melting Point | -12 °C |
| Density | 1.15 g/cm³ at 25 °C |
| Refractive Index | 1.551 |
| Flash Point | 104 °C |
| Solubility In Water | Insoluble |
As an accredited 2-Methoxybenzyl Chloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 2-Methoxybenzyl Chloride, 100g, is supplied in an amber glass bottle with a secure screw cap and safety labeling. |
| Shipping | 2-Methoxybenzyl Chloride is shipped in secure, airtight containers to prevent leakage and exposure. It is classified as hazardous and must be handled according to regulations for flammable and irritant chemicals. Proper labeling, documentation, and transport by authorized carriers are required to ensure safe delivery and compliance with safety standards. |
| Storage | 2-Methoxybenzyl chloride 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 oxidizing agents, strong bases, and moisture. Use appropriate chemical storage cabinets, preferably marked for corrosives or organohalogens. Always ensure containers are clearly labeled and protected from physical damage. |
Applications of 2-Methoxybenzyl Chloride in Industrial Manufacturing2-Methoxybenzyl chloride serves as a crucial intermediate across several specialized chemical segments, offering high reactivity and selectivity for downstream synthesis processes in controlled production environments. Below, we detail verified and established application tracks where this molecule is routinely integrated by industrial users. 1. Pharmaceutical Intermediate SynthesisLeading pharmaceutical manufacturers utilize 2-methoxybenzyl chloride as a protected benzylating agent in the multi-step synthesis of active pharmaceutical ingredients (APIs), including certain antihistamines and neuroactive molecules. Its reactivity under mild and anhydrous conditions allows precise protection and deprotection steps within GMP-compliant plants, ensuring batch consistency and traceability. The material enters as a functional building block in heterocyclic and aromatic substitution reactions, often preceding critical resolution or chiral purity stages after primary coupling. Proper documentation of residuals and impurities during each phase aligns with stringent global health authority requirements. Industry compliance standards
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2. Agrochemical Active Ingredient Manufacturing2-Methoxybenzyl chloride provides a functionalized aromatic moiety essential in downstream synthesis of novel agrochemical actives, particularly in the construction of benzyl ether containing herbicides and insecticides. Agrochemical formulators favor controlled alkylation reactions using this raw material, subject to rigid containment and environmental audit conditions specified by target region market entry. Optimized addition levels must respond to single-batch scale-up, considering the reactivity with nucleophilic substrates, which is key in sequential etherification or amidation protocols. Application documentation tracks residual and by-product removal through downstream purification and ensures full compliance with toxicological and environmental requirements. Industry compliance standards
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3. Fragrance and Aroma Chemical ProductionProducers in the fine fragrance and aroma chemical segment incorporate 2-methoxybenzyl chloride as a precursor for synthesizing methoxybenzyl-derived aldehydes and alcohols, which contribute unique floral and vanilla-like top notes. Formulators rely on its capacity to introduce and stabilize reactive benzyl structures during the construction of complex aroma molecules via Williamson ether synthesis or Friedel–Crafts-type alkylations. Batch addition requires meticulous ratio control to prevent excessive residuals affecting olfactory profiles, with finished molecules subjected to IFRA and other product-specific purity and allergen screenings. Industry compliance standards
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4. Dye and Pigment Intermediate ProcessingManufacturers in the specialty dye sector employ 2-methoxybenzyl chloride during the construction of advanced dye intermediates for textile, paper, and leather coloration. Chlorinated aromatic derivatives enable controlled introduction of methoxy and benzyl functionalities, increasing dye wash and lightfastness properties. Careful dosing and downstream integration under specified conditions permit efficient subsequent coupling, sulfonation, or diazotization. Dye houses monitor and document compliance with both environmental emission limits and detailed product analysis according to international standards. Industry compliance standards
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In our years of producing specialty chemicals for advanced applications, 2-Methoxybenzyl Chloride has earned a dependable reputation among users who know their chemistry. Our facility crafts this compound through established methodologies and firm process controls, so every batch meets precise purity expectations. We set out to ensure consistency because this compound plays an essential role as a building block in several fields, and customers value that reliability. Technical staff work closely with operations right through the synthesis, and our record is proven by feedback from research institutions and mature manufacturers alike.
2-Methoxybenzyl Chloride shows up in clear, colorless to slightly yellowish liquid form with a distinct, somewhat pungent aroma. Its chemical formula, C8H9ClO, is reflected in its stability and behavior in further transformations. Typical minimum purity runs above 99%, supported by GC and HPLC results for each lot. Our production lines hold tight to low moisture and low acid content parameters, because consistent reactivity is critical in downstream use. The model number in our catalog refers to the standard industrial grade, suitable for both pilot and production scale. Over the years, chemists have counted on our labeling accuracy—for environmental compliance and process verification.
Most labs and process units buying from us use 2-Methoxybenzyl Chloride as an intermediate for APIs, agrochemicals, and dyes. Medicinal chemistry groups like its performance in selective benzylation or as an alkylating agent for ethers and carbamates. One notable application includes synthesizing intermediates for antihypertensive or antifungal drugs, where the integrity of the chloride group affects the reaction footprint and purity of the active molecule. Specialty pigment companies integrate it because the methoxy substitution supports color fastness in select synthetic dyes.
Over hundreds of batches, we’ve seen the importance of clear understanding before use. This compound’s reactivity with nucleophiles opens paths to complex structures, but users must remain attentive to safe handling practices. Inhalation and skin contact must always be guarded against in any process setting. Our technical documentation goes beyond regulatory minimums, sharing accumulated experience about storage, compatibility, and best practices—because we’ve seen the impacts when care slips. For larger buyers, our logistics staff provides everything from secure packaging to guidance on ambient and cold shipment, since temperature shifts can affect delivery to some regions. We do not lose sight of these details because maintaining quality up to the point of use supports predictable results for our customers.
Not all benzyl chlorides behave the same way. Some processes prefer the unsubstituted analog, pure benzyl chloride, for general-purpose alkylations. Our teams have evaluated both in the same pilot runs. The difference comes down to the influence of the methoxy group—adding one to the ring at the ortho position not only shifts boiling and solubility but also modifies how the molecule enters further reactions. The methoxy group donates electron density, which can speed up or help control certain substitution steps. For example, in some nucleophilic aromatic substitution reactions, it can favor cleaner conversions or improve selectivity when making sensitive pharmaceutical intermediates. Research chemists have told us the methoxy version cuts down on side-product formation under optimized conditions. That nuance makes 2-Methoxybenzyl Chloride preferable in syntheses where unwanted by-products slow down purification and waste disposal. By supplying both bulk and smaller scale quantities, we give flexibility to labs exploring these differences first-hand.
This same substitution pattern offers better performance in the creation of protected amines. Customers regularly highlight increased yields during benzylation when compared to using benzyl chloride, especially when targeting less reactive amines. The improved reaction efficiency helps not only on the bench but also in minimizing throughput times in a commercial set-up. We have received feedback from buyers who switched and then rarely looked back—especially after noting a drop in purification interventions. Our customer experiences often confirm what literature suggests—the methoxy group’s presence holds real value when pursuing cleaner conversions and streamlined post-reaction work-ups.
Change in the chemical industry rarely stays isolated. Regulations evolve, preferred synthesis routes modernize, and demand for cleaner, high-purity intermediates keeps rising. 2-Methoxybenzyl Chloride production has reflected these trends—tighter impurity controls, improved ventilation in handling areas, and efforts to trace raw material sources. Our technologists continually review synthesis pathways for greener chemistry, high atom economy, and minimized waste streams. When environmental policy tightens emissions standards, our facility adapts scrubbing and capture systems. Our customers trust the effort we put into these adjustments, because compliance can make or break entry into regulated markets.
Through partnerships with consumer-facing manufacturers, we have seen the downstream expectations—every stage of process validation demands documented consistency. Those manufacturing drugs or fine chemicals depend on reproducibility and traceability, and we support them directly by maintaining batch-level documentation. Our quality lab works hand-in-hand with customer auditors. Some buyers value full trace impurity breakdowns for regulatory submissions, and we offer them, borne out of our own commitment to accuracy rather than as a checkbox exercise. We recognize that gaps in supplier transparency introduce downstream risks—and so have built our reputation on long-term alignment with these needs.
The journey from raw material to customer delivery never follows a simple script. 2-Methoxybenzyl Chloride, like many specialty chemicals, can present real headaches in scale-up and logistics. Through several production cycles, we have refined our containment and loading procedures, reducing downtime from cross-contamination or line residue. Changes in feedstock pricing and regulatory tariffs have tested our procurement planning—yet our plant teams take the long view, sourcing consistently and holding reserve stocks to shield buyers from supply shocks. Our direct production focus means better foresight: feedback from the line translates immediately to adjustments in packaging, labeling, or shipping routes, avoiding common pitfalls that resellers face due to slow communication chains.
Shipping hazardous chemicals brings its own regulatory hurdles—especially for chlorinated organics. Over the years, we have faced stricter rules on labeling, container integrity, and transport declarations. Each new transportation regulation prompts another round of training and investment—transitioning to UN-approved drums, adopting better seals, and updating SDS sheets. We accept the realities of international trade: missing a documentation checkpoint can cost a shipment its delivery window, which could set back a customer’s project. By owning this responsibility, rather than outsourcing it through a web of distributors, we give downstream users direct access to someone who knows both the product and the paperwork. The value of direct producer-buyer ties becomes clearest during regulatory audits or requests for real-time lot data.
Safe handling doesn’t stop at leaving our gates. Although we invest deeply in controlling emission and exposure at our facility, our engagement continues with customers. We offer training and technical advice drawing from our own in-house safety protocols. Our process engineers have learned from decades of reactive incident reviews that even seasoned operators can overlook small but critical steps—like static protection or the right fume extraction. By sharing our learnings, we help customers avoid incident repetition.
On the environmental side, chlorinated intermediates remain in the spotlight for sustainability challenges. We have responded by streamlining solvent recovery and driving closed-loop operations. Detailed life cycle accounting gives us a sharper view of raw input and output impacts. Our team works on minimizing atmospheric releases, since even small inefficiencies add up across annual production runs. End-customers in Europe and North America especially value evidence of these initiatives when screening suppliers. Sustainable chemistry isn’t a slogan here—it’s the result of process tweaks prompted by employee suggestions, efficiency audits, and engagement with external experts.
Direct manufacturing experience offers more than just quality assurance. Our technical support staff don’t only work from product literature—we share on-the-floor stories. Sometimes a buyer encounters unexpected reactivity, solubility quirks, or needs a tweak in delivery format. Maybe an established process feels out-of-spec with a new application. Time and again, our chemists collaborate to propose real solutions: from investigating nitrogen purging tweaks to troubleshooting crystallization after alkylation steps. Such hands-on guidance is possible because we see the product every day, not just as a set of data points on a screen.
Differences in batch scale and stirring methods, among other factors, can shift reaction outcomes during process transfers. Our willingness to provide pilot samples and answer regulatory or technical queries comes from familiarity with user setbacks. We learn as much from advanced clients as we share in reverse. One recent example saw us assist a customer developing a more selective coupling reaction. Our knowledge of by-product profiles under variance in temperature and pressure conditions turned a failed pilot into a scalable route.
Requirements don’t look the same in every geography—each region brings unique stipulations for chemical intermediates. Some customers need supporting technical dossiers, REACH registration, or proof of compliance with new pesticide use rules. From the producer’s seat, providing this isn’t extra—it’s part of the job. Our documentation includes full QC histories, impurity logs, and certificates that stand up to regulatory scrutiny worldwide. Whether it’s a pharma project in Asia, a dye plant in South America, or an agrochemical synthesis in Europe, our internal systems anticipate variations in customer needs. This isn’t happenstance, it comes from years spent bridging on-site technical know-how with changing regulatory language.
Working directly with the manufacturer saves time during audits. Regulatory officials and quality managers value hearing straight from the people who made the product, not an abstract middleman. Our experts walk site visitors through each point in the batch record, answer detailed chemistry questions, and discuss plans for addressing new regulatory shifts. This responsiveness helps customers keep their own compliance programs running smoothly.
Process improvement runs as a core theme throughout our operation. Our methods and QC protocols adjust in response to actual user feedback, not just top-down workforce mandates. When we hear about a customer’s new filtration bottleneck or an issue with package durability during long-distance shipments, we investigate. Padding techniques, drum liners, secondary containment—each emerged from real issues caught and resolved by open communication. Chemists and operators from our team take pride in contributing to solutions that stick. By keeping this feedback cycle active, we protect both our own reputation and the customers’ output quality further downstream.
Continuous investment in our facility and equipment underpins every guarantee of purity and reliability. Equipment upgrades, in-line monitoring, and additional solvent recovery measures spring from ongoing reviews, not leftovers from capital budgets. When we identify an opportunity—whether to cut solvent loss or improve traceability—we don’t hesitate to act. Customers rely on factories that keep evolving with science and regulation, not ones that rest on outdated process assets. Many have told us that our willingness to walk the floor, witness a pain point, and take action sets us apart from more bureaucratic suppliers.
Rising input costs, shifting energy prices, and transport constraints make chemical manufacturing a challenge every year. Our experience has taught us to maintain strong supplier relationships for core feedstocks like anisole and chlorinating agents. We hedge against sudden shortages, knowing that customer projects can’t wait out market fluctuations. Strategic raw material reserves and flexible batch scheduling systems guard against the price swings and temporary bottlenecks that creep up in global trade. Our buyers see this steady availability as a major benefit—especially when planning multi-year campaigns or fast turnarounds on new product launches.
We offer both bulk tank truckloads and smaller, sealed container shipments, tailoring delivery formats to process scale and customer infrastructure. Direct communication with our logistics and operations teams leads to quicker responses on urgent orders, date changes, or new compliance paperwork. We understand the cost of delay—a missed delivery means lost man-hours and idle reactors. That’s why customers who value reliability often work directly with us, rather than take chances through fragmented distribution networks.
As research and industry move forward, new areas call for modified building blocks. 2-Methoxybenzyl Chloride’s uses expand as customers develop fresh synthetic pathways. From new catalysts in material science to tailored protective groups in peptide synthesis, we watch and adapt. Collaborations with university teams and startup incubators bring early notice of these shifts. Our systems support low-volume, high-spec prototype batches for such innovators, with a promise of scale-up support if their process moves to commercial production. By keeping channels open between researchers and plant staff, we smooth the path from hypothesis to pilot batch—and on to market.
We see rising interest in green chemistry, both in developed economies and newer markets. Traditional methods that use heavy metal catalysts or release waste streams are coming under pressure. Customers’ R&D teams ask for process data and potential for recovery and reuse in their own setups. Our technical support collaborates with both established and experimental users, detailing experiences with cleaner solvents, less persistent side-products, and more recoverable by-products. Many of the improvements we implement at scale can trace their roots to questions from ambitious scientists trying to do more with less environmental impact.
As a producer of 2-Methoxybenzyl Chloride, we take the trust placed in our expertise seriously. Chemical manufacturing isn’t just about filling drums; it's about understanding the evolving needs of every industry that relies on these crucial intermediates. The direct relationship between our facility and our customers creates space for honest feedback, faster problem-solving, and shared progress in process safety and innovation. This open, direct line works for everyone: our own teams, the operators and chemists at customer sites, and end-users who depend on safe, reliable products. Through every order, we maintain a steady focus on supplying high-quality material, supporting regulatory compliance, and mapping the way to better, more responsible production. Each success in our customer's process reflects decades of careful manufacturing and deep knowledge—values we stand by each day in production and beyond.