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HS Code |
561200 |
| Cas Number | 2545-25-1 |
| Molecular Formula | C5H6O2 |
| Molecular Weight | 98.10 g/mol |
| Iupac Name | 2-Methoxyfuran |
| Appearance | Colorless liquid |
| Boiling Point | 86-88°C |
| Melting Point | -84°C |
| Density | 1.02 g/cm3 |
| Flash Point | 4°C (closed cup) |
| Solubility In Water | Slightly soluble |
| Refractive Index | 1.458 (20 °C) |
| Synonyms | 2-Furyl methyl ether |
As an accredited 2-Methoxyfuran factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 2-Methoxyfuran is supplied in a 100 mL amber glass bottle with a secure screw cap and clear hazard labeling. |
| Shipping | 2-Methoxyfuran is shipped in sealed, chemical-resistant containers under inert gas to prevent moisture and air contact. The packaging complies with hazardous materials regulations, labeled with appropriate hazard warnings. It is transported at controlled temperatures, avoiding heat and ignition sources. Shipping documentation includes safety and handling instructions as per regulatory guidelines. |
| Storage | 2-Methoxyfuran should be stored in a tightly sealed container, kept in a cool, dry, and well-ventilated area away from sources of ignition. Protect it from moisture, heat, and direct sunlight. Store separately from oxidizing agents, acids, and bases. Clearly label the storage area and ensure proper spill containment. Use explosion-proof equipment where necessary. |
Applications of 2-Methoxyfuran in Industrial Manufacturing2-Methoxyfuran serves specific roles across several advanced chemical manufacturing processes, leveraging its reactivity and unique structural attributes. As an experienced manufacturer, we highlight its verified application scenarios where it delivers reliable performance, meeting the technical and regulatory needs of global industrial customers. 1. Fine Chemical Intermediates SynthesisProducers of fine chemical intermediates use 2-Methoxyfuran as a reactive building block in the construction of heterocyclic compounds and specialty ligands. This material integrates smoothly into multistep synthesis cascades, especially where selective furan functionalization advances complex molecular scaffolds needed for pharmaceuticals and advanced materials. Accurate measurement and controlled addition at the coupling step ensure high yield for specialized compounds destined for regulated industries. Industry compliance standards
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2. Pharmaceutical API Research and Route ScoutingMedicinal chemistry labs and pilot facilities rely on this raw material as a starting scaffold to introduce substituted furan motifs in next-generation drug candidates. Its selective reactivity helps design libraries of analogs while maintaining manageable impurity profiles. GMP-compliant facilities calibrate addition to avoid overalkylation or undesired ring opening during scale-up, with systematic in-process controls guiding purity specifications for clinical route validation. Industry compliance standards
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3. High-Performance Polymer Precursors2-Methoxyfuran acts as a functional monomer or comonomer in the manufacture of specialty polymers with enhanced barrier properties and thermal stability. Polymer producers integrate it into polycondensation or copolymerization steps, allowing insertion of furan rings within polymer backbones for flexible electronics, packaging, or engineering plastics. Formulators adjust feed ratios to balance material properties and regulatory compliance for migration and trace impurities. Industry compliance standards
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4. Agrochemical Active Ingredient SynthesisAgricultural chemistry manufacturers utilize this compound in the targeted construction of furan-containing herbicide and fungicide actives. Its selective ring system enables the creation of bioactive motifs resistant to rapid degradation, supporting improved product persistence in crop protection. Producers fine-tune addition timing and ratio based on downstream functionalization requirements and compliance with residue and impurity restrictions globally. Industry compliance standards
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5. Electronic Chemical ManufacturingMaterials suppliers for the semiconductor and organic electronics sectors leverage the compound for constructing advanced organic semiconductors and conductive polymers. Its reactivity supports the efficient synthesis of complex molecular wires and charge transport materials with high purity. Strict control over feed ratio and in-line analytical confirmation maintains required electrical performance and consistent batch reproducibility for downstream device integration. Industry compliance standards
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Producing fine chemicals like 2-Methoxyfuran, we gain a practical feel for what matters in real-world labs and plants. In our workshops, precision isn’t a checkbox—it's a habit reinforced across every shift. Our 2-Methoxyfuran, model MFX-050, passes through every stage of synthesis under careful observation from operators who have seen solvents, intermediates, and specialty chemicals come and go. This hands-on experience steers our choices of raw material, controls our reaction parameters, and sets a firm foundation for performance you can trust.
Each batch of 2-Methoxyfuran hits a purity of at least 98%, with residual moisture below 0.2%. Our teams collect retention samples for every lot and map each drum to its originating vessel. Specific gravity consistently falls between 0.970 and 0.980 at 20°C. The color remains water-white, free of haze, with no strange undertones. Only hydrocarbon-free stock comes in contact with the sample to keep out off-odors and surprise peroxide content. Most of our customers order this grade as a colorless, low-viscosity liquid, because the lower freezing point, below -50°C, ensures uninterrupted delivery and application, even across seasonal shifts.
We scale production using a closed glass-lined reactor system and nitrogen inerting for safety. Inline probes continuously check for water, and our final fill line doesn’t start until Karl Fischer results pass the test—no moisture, no surprises downfield. Tanks run pressure-tested, all packaging is clean, and every outgoing drum holds a tamper-evident seal. Repeat customers often tell us this attention to detail saves headaches, especially when running moisture-sensitive reactions or building up library compounds under tight screening schedules.
On the customer side, the teams working with our 2-Methoxyfuran mostly seek its value in organic synthesis. During extended conversations with process chemists and project managers, the talk quickly moves from wish lists to what works in the flask. Researchers in pharmaceutical, agrochemical, and material science labs have called on 2-Methoxyfuran to introduce methoxy or furan groups into complex cores. Few other intermediates offer the same mix of electron-rich structure and stability while remaining easy to manipulate in a multi-step pathway.
Its use as a masked 4-carbon synthon, for instance, gives synthetic chemists a shortcut when stitching together heterocyclic scaffolds. We've seen medicinal projects switch to 2-Methoxyfuran when earlier attempts with standard furans or methylated furans hit limits, either due to over-reactivity or selectivity issues. The specific reactivity profile of the methoxy furan ring allows for predictable transformations under conditions that might decompose plain furan or less-protected derivatives. This means more useful intermediates and a lower risk of failed batches during sequence scale-up.
Polymer researchers have reported success using our product in the development of specialty resins and advanced coatings, where both the electronic and structural properties of the molecule add flexibility to design. The brief, yet effective, methoxy group’s electron-donating feature supports both stability and functionalization, helping avoid the stability pitfalls that frequently trouble unsubstituted or easily oxidized furan derivatives.
Taking a close look at 2-Methoxyfuran’s performance against other chemicals in the same family, the serious distinctions become clear. Unlike plain furan, which arrives on site as a highly flammable, easily polymerizing liquid, 2-Methoxyfuran provides greater shelf stability and reduced tendency for runaway exotherms during storage or reaction. Technicians report less hassle handling this product, which shows resilience during prolonged storage and resists the sticky residues and off-odors we remember from our early days working with low-purity furan stocks.
Methylfuran has a lower boiling point and less selective reactivity, which can force downstream purification steps and bring unpredictable side reactions. By contrast, the methoxy substitution in our product shields the furan ring, opens cleaner reaction spaces, and brings synthetic flexibility—particularly attractive for chemists tired of post-purification headaches and unexpected isomers in their HPLC runs.
As the manufacturer, we've watched our quality control data over many years, noticing that batch-to-batch consistency with 2-Methoxyfuran beats most alternatives. Our approach focuses on preventative maintenance, demanding training, and a simple rule: if a batch doesn’t meet spec, it doesn’t ship. We take particular pride in our in-house research efforts, which have tested common substitutions and catalogued yield differences, impurity profiles, and safety concerns. This hands-on process gives us a unique view of which molecules help customers finish their projects faster, safer, and more cost effectively.
Most of the trade stories about chemical sustainability skip over the difficult choices that chemical manufacturers face. As a direct producer, we’ve learned that investing in internal containment systems, double-layered drum jackets, and robust venting isn’t just an environmental checkbox—it’s the only approach that keeps quality reliable across all seasons. Subtle changes in raw materials, atmospheric pressure during fill, or a rushed transfer session can create batches that never reach the spec desk.
We train every operator on the smell, flash point, and visual appearance of 2-Methoxyfuran. Beyond the published technical data, there’s a team of people checking every shipment before it leaves the warehouse. Some of our partner labs offer their own third-party verification, and our records invite them to cross-check results. Real-world safety comes down to more than just SDS sheets and compliance memos—the safest chemical is the one made with pride and consistency by people who know every detail about its behavior.
On the sustainability front, recent years have ramped up the push to adopt green chemistry principles, including minimizing waste, reducing solvent volumes, and reusing recovered byproducts. Our pilot plant produces 2-Methoxyfuran from carefully sourced feedstocks, and our team recycles all process water through a closed-loop scrubber. Analysts review carbon impact metrics for each production run. This focus satisfies not just regulatory requirements but reflects the real-world accountability that comes from seeing the impact of waste, odor, or inefficiency every single day.
Few things frustrate a plant foreman or lab manager more than downtime due to variable chemical supplies. With 2-Methoxyfuran, we have aimed for stability at every step—from procurement of raw materials down to the labeling for shipment. We take pride when production chemists report that their syntheses work the same in March as in October, that their yields hold up, and that unplanned shutdowns become rare. That comes from our story, not just process data: every tweak we’ve made has come from someone on the line who has spent years watching what works and what doesn’t.
Feedback from hundreds of QA and R&D teams points to a simple fact—2-Methoxyfuran solves specific reactivity and selectivity challenges that arise with more commonly available alternatives. In pharmaceutical routes, medicinal teams have built complex heterocycles and fused-ring scaffolds using this product, reporting higher yields and cleaner conversions than with methylated or unsubstituted furan starting points. This isn’t sales talk: our records back up these trends, and our own research has tested these claims at the kilo lab level before signing off on routine production.
From an engineering standpoint, the relatively high boiling point reduces evaporation losses during solvent-intensive transformations, bringing either improved mass balance in scaled reactors or easier containment during pilot runs. The inertness of the methoxy group under normal handling conditions means longer shelf life and a reduced need for special storage, which takes strain off receiving crews and lets operators focus on moving lots instead of managing exceptions.
Over decades of scale-up, every change in our 2-Methoxyfuran operation has surfaced from real-world challenges. We’ve adjusted our process in response to where earlier standard grades struggled—issues like product darkening after a month in storage, peroxide formation in returned partial drums, or inconsistent freezing during winter shipments. Having direct responsibility for every stage means we see the failures as sharply as the successes.
Real improvements have included installing in-line scavenging beds to capture trace acidity before final filtration, automating water analysis at multiple points in the run, and applying stricter control over nitrogen blanketing to prevent partial oxidation. Not every competitor takes these extra steps, but our years of troubleshooting tell us they make the difference during audits, customer inquiries, and performance troubleshooting. Every hour spent on maintenance, every update to our operator logs—these show up in the clear, consistent product pouring from our lines.
When industry shifts or new regulations land, our team adapts—and so does our approach to 2-Methoxyfuran. We engage partner labs to challenge our assumptions and keep documentation ready for every production campaign. Feedback from large-scale project users has led to tighter limits on trace metals and improved purification steps. Instead of resting on a legacy process, we’re constantly learning from every QC outlier, shipment delay, or unexpected chromatographic finding.
Having supplied 2-Methoxyfuran to both specialized and multi-product plants, we advise users to invest in understanding the limits of their own systems. In the early years, we saw some clients approach the product as a drop-in replacement for furan or methylfuran. Many soon discovered that the methoxy group opens new selectivity opportunities and unlocks different reaction windows—but it pays to run pilot studies and compare performance head-to-head with older reagents. Our technical team often collaborates directly with user sites to adapt guidelines and help troubleshoot first runs, sharing insights gained over years of plant-scale experience.
For storage, we keep our packaging in rust-free, dry containers and regularly rotate inventory. Customers who do the same rarely run into issues, though heat and moisture can shorten shelf life for any sensitive organic. Routine on-site sample testing—smell, water content, clarity—prevents surprises. When you see a clear, odor-free fill, you know every process variable has stayed within its limits.
We encourage proper handling of all furan derivatives, including ours. Inexperienced users occasionally underestimate the potential for strong exotherms with certain reagents. For this reason, we provide extra process details during onboarding and recommend local exhaust or sealed-system operation. Staff with a history of handling ethers or furans catch on quickly, reporting that 2-Methoxyfuran falls within predictable safety limits on both small and large scales.
Chemical manufacturing never stands still. Advances in catalysis, green chemistry, and medicine all point toward higher demand for reliable, functionalized building blocks. As more research groups and process plants push into new heterocyclic scaffolds or smarter polymer backbones, the need for consistently pure, well-documented materials like 2-Methoxyfuran is only growing. Experience tells us unpredictability comes not from the chemistry, but from inconsistent practices—so we keep pressing for better internal systems and honest feedback from our network.
Open conversations with research chemists, process developers, and engineering managers will continue shaping our protocols. We've seen firsthand how projects succeed when there's a direct line between the manufacturer and the user—the feedback loop keeps both sides accountable and helps drive improvement. For decades, this approach has made our 2-Methoxyfuran a favorite choice among specialists who know that technical reliability matters more than hot marketing.
Looking forward, we invest in every technology that keeps our product out front in both performance and compliance. Our R&D team targets process safety, reductions in waste, and traceability, so that every batch shares the same reliability as the last. The input of practical users—those actually running reactions and pumping batches through reactors—remains our gold standard for change and improvement.
We have stood in the shoes of chemists and operators alike, solving real problems as they arise, learning what works and improving it year by year. Our 2-Methoxyfuran isn't a commodity—it’s a specialty tool for both upstream and downstream applications, borne of rigorous effort and close working relationships with end users. Each improvement we make responds to a direct need on the ground, and every bottle we ship carries the weight of that hard-earned knowledge.
From synthesis to shipment, we focus on transparency, reliability, and collaboration. Our team’s collective years on the shop floor—coping with the grind of 24-hour schedules, adapting to new methods, following up on customer feedback—tell us this is the only way to make chemicals that support real innovation and lasting progress.
So, for labs and plants taking on their next generation of research or production, our 2-Methoxyfuran arrives as more than a rare specialty. It’s a partner for those who measure their success vial by vial, batch by batch. That’s what keeps us moving, bottle after bottle, year after year.