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HS Code |
782954 |
| Chemicalname | 1-Benzofuran-2-ylmethanol |
| Molecularformula | C9H8O2 |
| Molecularweight | 148.16 g/mol |
| Casnumber | 60724-05-2 |
| Appearance | White to off-white solid |
| Meltingpoint | 61-65 °C |
| Solubility | Slightly soluble in water; soluble in organic solvents |
| Smiles | OCc1cc2ccccc2o1 |
| Inchi | InChI=1S/C9H8O2/c10-6-7-5-8-3-1-2-4-9(8)11-7/h1-5,10H,6H2 |
As an accredited 1-Benzofuran-2-Ylmethanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle with secure screw cap, labeled "1-Benzofuran-2-Ylmethanol," 25 grams, with hazard warnings and handling instructions. |
| Shipping | **Shipping Description:** 1-Benzofuran-2-ylmethanol is shipped in tightly sealed containers, protected from moisture and light. It is labeled according to chemical safety regulations, ensuring secure handling. Typically transported as a hazardous chemical, it requires documentation and appropriate hazard labels. Shipping complies with relevant local and international regulations for laboratory reagents. |
| Storage | 1-Benzofuran-2-ylmethanol should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as oxidizing agents. Keep the container tightly closed and protected from light and moisture. Store at room temperature, preferably in a chemical storage cabinet designed for flammable or hazardous organic compounds. Always follow proper safety protocols and local regulations. |
Applications of 1-Benzofuran-2-Ylmethanol in Industrial ManufacturingAs a direct manufacturer specializing in 1-Benzofuran-2-Ylmethanol, we supply this raw material to established industrial partners across multiple advanced chemical sectors. Our product supports precise manufacturing demands by meeting process-specific quality and traceability requirements in each downstream scenario. Below, we detail actual application segments verified by customer deployment, technical support history, and regulatory landscapes. 1. Synthesis of Pharmaceutical IntermediatesOur material serves as a building block in the advanced synthesis routes for select heterocyclic pharmaceutical intermediates, especially those used in the preparation of anti-infective and CNS-active compounds. Quality control teams in API production facilities integrate 1-Benzofuran-2-Ylmethanol in the intermediate condensation or protection steps, operating under validated batch records. Analytical labs confirm identity and purity by HPLC and NMR according to pharmacopoeial monographs. The specific addition rate depends on stoichiometric requirements and impurity profiles set by the end drug candidate’s process validation. Industry compliance standards
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2. Fine Fragrance and Aroma Compound FormulationMajor aroma chemical manufacturers employ 1-Benzofuran-2-Ylmethanol as a core ingredient for synthesizing specialty fragrance molecules. Its aromatic alcohol structure enables construction of benzofused musk and balsamic accords, used in high-value perfumery accords and aroma blends for consumer goods. Stability during distillation and reactivity in esterification are monitored closely during batching, while end-of-line GC-MS assures the absence of untoward impurities in compliance with IFRA specifications. Industry compliance standards
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3. High-Performance Polymer AdditivationSpecialty polymer and resin manufacturers utilize 1-Benzofuran-2-Ylmethanol as a functional additive to enhance the UV stability and chain extension properties of engineering plastics and coatings. Custom compounding lines precisely meter the raw material into reaction vessels during polycondensation to introduce desired benzofuran moieties, conferring resistance to photodegradation in high-performance applications like automotive and outdoor construction. In-line spectrophotometry and mechanical testing validate the dispersion and molecular-level interaction of the additive following ASTM protocols. Industry compliance standards
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4. Organic Electronic Material PrecursorProducers of advanced organic electronic components use 1-Benzofuran-2-Ylmethanol as a precursor when fabricating high-purity conjugated compounds for optoelectronic and OLED device layers. Its structural compatibility with fused aromatic systems makes it ideal for deposition or doping processes that require strict control over impurity profiles and glass transition temperatures. QC laboratories perform ultra-trace analysis against relevant electronics standards to guarantee downstream device reliability. Industry compliance standards
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Working in chemical manufacturing for years, one truth stands out: consistency matters as much as innovation. In our production facilities, we have seen firsthand the difference high-purity intermediates can make in specialty synthesis, especially for customers requiring 1-Benzofuran-2-ylmethanol. Over time, this benzofuran derivative has become a staple for labs and plants focused on pharmaceuticals, agrochemicals, and advanced materials research. Many industrial users approach us after encountering variable results with suppliers who trade from fluctuating stockpiles. They search for a substance that delivers not just on paper, but in every step of real operations—where precise reactivity and single-digit impurity levels make or break entire campaigns.
Every batch of 1-Benzofuran-2-ylmethanol produced here undergoes controlled synthesis followed by stringent, multi-step purification. Most partners request this product as a crystalline solid with purity levels above 98.5%. Under the harsh scrutiny of gas chromatography and liquid chromatography instruments, we identify trace byproducts and remanufacture until specifications tighten—especially when customers demand reliable yields downstream. From our side, the clear color and distinctive mild aroma of the product signal successful processing, but there is no shortcut. Some companies accept higher moisture content or tolerance for isomeric forms. Over the years, we have chosen to prioritize rigorous drying and extended holding periods to assure both chemical and physical stability. Key parameters like melting point and residual solvents are tracked batch by batch and adjustments in reaction conditions respond directly to real-world feedback from our clients’ development chemists.
Across the years, we have seen applications for this compound evolve. Drug discovery teams regularly approach us for kilogram to multi-ton orders after pilot runs reveal the need for validated, reproducible materials. 1-Benzofuran-2-ylmethanol serves as a structural backbone or coupling partner in synthesis of more advanced heterocycles—rings and chains engineered for selective biological activity. Some researchers turn to benzofuran methanols when developing anti-inflammatory drug candidates, antifungal agents, or even exploring central nervous system therapies. From our direct feedback with customers, we have gathered successful case studies where impurities from inconsistent sources produced unwanted byproducts in key transformations, such as Suzuki coupling or Grignard reactions. By providing narrow-batch control and transparent analytical data, we keep ambitions for novel compounds practical and cost-efficient.
There’s a stark contrast between chemical production at bench scale and running multi-kilo loads day after day. Our teams regularly meet with chemists and procurement specialists who want more than just technical grade material; they rely on predictable physical form. We focus on batch-to-batch uniformity—granular, easy-flowing crystals that resist clumping even in humid conditions. Some competitors ship their benzofuran intermediates with traces of mother liquor or amorphous residue that complicate direct weighing or handling by robots and automated lines. By contrast, every lot from our lines is filtered, vacuum dried, and packaged only after particle size and flowability pass strict internal standards developed from years of troubleshooting with real-world customers. This consideration helps not only in day-to-day dispensing but also when blending into pre-made matrices, where even a hint of excess moisture or trace acids sparks reactivity issues.
We regularly invite feedback and site visits from our largest clients, both in pharmaceuticals and in custom fine chemical processing. Some have brought us samples of their previous supplies, pointing out issues ranging from inconsistent solubility in standard polar solvents to micro-contamination detected during advanced spectrometry. We have developed custom isolation procedures for projects sensitive to sulphur or halogen contamination, drawing from real requests rather than hypothetical scenarios. Others have asked for specific particle size ranges or low-dust presentation to support tablet manufacture or automated weighing at their end. These lessons have influenced operational changes on our shop floor, such as adjusting temperatures at filtration and controlling nitrogen sweeping. Such improvements are rarely copied by casual traders. Our approach is direct: listen to those who use the end product day in and day out, then align our plant protocols to address actual concerns, not just regulatory minimums.
Technicians often ask us how 1-Benzofuran-2-ylmethanol stands apart from other oxygen heterocycles or benzyl alcohol analogues. In our experience, this molecule occupies a sweet spot where reactivity and stability overlap. It serves as a robust precursor for ether and ester formation under mild conditions, without the rapid degradation or over-alkylation seen with some less substituted methanols. By contrast, benzyl alcohol or phenethyl alcohol series—both popular for their own uses—do not offer the same ortho-fused heterocycle profile, so their final products often lack the unique biological activity that benzofuran motifs can deliver.
We also see some buyers assume that other benzofuran derivatives could substitute for 1-Benzofuran-2-ylmethanol in advanced synthesis. In the field, that rarely works. The specific placement of the hydroxymethyl group at the 2-position directly dictates subsequent functionalization, especially in regioselective reactions. During coupling with sensitive reagents or in amidation runs, minor differences in structure lead to changes in solubility, purification, and even biological performance. Insights gained from repeated collaboration with R&D teams have confirmed that shifting even a single group on the benzofuran core can reduce yield, introduce more side products, or necessitate extra purification steps. Reliable manufacturing traces these fine distinctions, helping clients avoid time-consuming reformulation or redesign.
Some requests come with challenging requirements around solubility profiles in mixed solvents, especially as projects move from lab to pilot scale. We have adjusted crystallization parameters, used specialized glassware configurations, and even tested new drying approaches to support work where trace water or organic solvent residues induce decomposition. In one pharmaceutical collaboration, our controlled drying protocols helped the partner achieve direct dissolution without additional filtration—speeding up parallel syntheses and avoiding downstream failures. Purity concerns stretch further than just analytical numbers on certificates; in multi-stage synthesis, memory effects from trace impurities or solvents often escape detection until months later during stability testing. Our approach prioritizes real-world performance, emphasizing experience-backed process control over abstract minimums.
Over the past decade, volatility in global logistics has raised alarms about material uptime and unplanned delays. Unlike traders who may source from any available surplus, we run repeated, forecast-driven syntheses in the same plant, using raw materials that pass tightly controlled incoming checks. Open communication with production leads and planning teams lets us signal inventory changes as soon as input costs or schedules shift. Many clients return after unsuccessful experiences with brokers who sell off old or borderline-outdated stock, which exposes them to both performance and compliance risks. By maintaining a clear audit trail for every incoming drum and outgoing package, we help users meet internal and third-party standards without the threat of hidden variability. We have worked with customers under tight regulatory regimes, who require not just batch records but traceability of every process input in the supply chain. This transparency doesn’t happen by accident; it pushes us to invest in trained staff and constant incremental improvements in our shop-floor data tracking.
With growing scrutiny from both legal and social angles, environmental safety has moved from boardroom rhetoric to shop floor implementation. 1-Benzofuran-2-ylmethanol production at our facility incorporates closed-system handling, solvent recovery, and advanced water treatment—measures chosen to reduce overall environmental impact. Some customers, especially those exporting finished products, ask detailed questions about the eco profile of intermediate precursors. In response, we provide not just legally required documentation but share direct insight into process upgrades, such as solvent minimization and energy recycling. Front-line operators receive ongoing safety training rooted in our real-world incident log, not just handed a list of abstract hazards. Through this hands-on approach, we help downstream users confidently address both their internal audits and emerging environmental compliance challenges.
Across industries, from pharmaceuticals to materials science, users return to secure long-term relationships based on directly measurable performance. Once project teams run the first few loads of our 1-Benzofuran-2-ylmethanol, they often expand purchases because previously unforeseen variables—like needle formation during crystallization or unexpected solvent sensitivity—are reduced or eliminated. Repeat customers depend on real feedback loops, including retained batch samples and rapid troubleshooting support. In our experience, these preemptive measures are far more valuable than any “off-the-shelf” purchase by traders, where batch-to-batch changes may warrant reformulation or extra analytical work.
Our own operations emphasize readiness for urgent orders, holding extra inventory in climate-controlled storage and maintaining production slots that accommodate fluctuations without raising contamination risk. Emergency resupplies can mean the difference between a plant shutdown and continued progress; we approach contingency planning as a partnership, rather than a transactional shipment. Scheduling regular status updates for key clients—whether through online platforms or direct technical briefings—ensures nobody is left in the dark when supply chain risks or raw material disruptions threaten continuity.
We have been called into projects at late stages where partners faced partial shipment losses or quality drift from previous sources. In several instances, our ability to expedite re-manufacture and provide tailored characterization helped customers proceed with scale-up, saving both time and project investment. One team developing a new anti-infective candidate documented how switching to our benzofuran-2-ylmethanol reduced final product isolation steps, thanks to minimized side reactions stemming from minor impurities. A specialty polymer client, after struggling with inconsistent substitution rates using third-party batches, adopted our product for its stable reactivity, allowing them to hit performance targets without excess purification.
Direct dialogue remains central to our ongoing collaboration. We facilitate ongoing process optimization, support custom packaging or blending requests, and troubleshoot persistent bottlenecks. This open channel frees up R&D groups to focus on expanding their projects, backed by confidence that each batch of 1-Benzofuran-2-ylmethanol will match or exceed their established performance benchmarks.
The last several years highlighted structural challenges across the sector—raw material price swings, transport interruptions, and intensified regulatory reviews. Every situation taught us hard lessons about the value of resilient, localized production. By avoiding overdependence on outside suppliers and focusing on single-site synthesis, we have shielded customers from many of the disruptions that ripple through loosely managed supply chains. Our technical team tracks changes in both precursor availability and regulatory classifications, staying ahead of prospective restrictions and formulation requirements. When new compliance or analytical standards emerge, we adapt quickly, communicating updates not just as paperwork but in terms of potential impact on process and performance.
We continue investing in process upgrades and analytical instrumentation with a clear goal: serve users exploring more complex chemistry, at scales ranging from grams to metric tons. As benzofuran structures enter further into green chemistry initiatives, sustainable agriculture, and precision medicine, our focus remains on providing that crucial blend of purity, consistency, and tailored partnership. We encourage current and future clients to challenge our team with their toughest requirements for 1-Benzofuran-2-ylmethanol—whether that means customized particle sizes for automated high-throughput synthesis, or technical support for difficult downstream functionalizations. Having built a business around real manufacturer feedback, and not just resale, our team takes pride in fueling discovery and industry success, one high-quality batch at a time.