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HS Code |
910545 |
| Cas Number | 7397-46-8 |
| Molecular Formula | C5H13BO2 |
| Molecular Weight | 115.97 |
| Iupac Name | methoxy(diethyl)borane |
| Appearance | Colorless liquid |
| Density | 0.817 g/cm3 |
| Boiling Point | 94-96 °C |
| Refractive Index | 1.388 |
| Flash Point | -2 °C |
| Solubility | Reacts with water |
As an accredited Methoxydiethylborane factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Methoxydiethylborane is supplied in a sealed, amber glass bottle, 100 mL, labeled with hazard warnings and storage instructions. |
| Shipping | Methoxydiethylborane should be shipped as a hazardous material under appropriate regulations. It must be packed in air-tight, moisture-free containers, typically under inert gas, and protected from heat, sparks, and moisture. Ensure compliance with UN3178 classification and use strong, compatible packaging with correct labeling and a safety data sheet included. |
| Storage | Methoxydiethylborane should be stored in a cool, dry, and well-ventilated area, away from heat, sparks, and open flames. Keep the container tightly closed and protected from moisture and air, as the compound is sensitive to hydrolysis and may react with water. Store under an inert atmosphere, such as nitrogen or argon, and segregate from oxidizing agents and acids. |
Applications of Methoxydiethylborane in Industrial ManufacturingMethoxydiethylborane is a specialized boron-based reagent with targeted applications in the synthesis of fine chemicals and pharmaceutical intermediates. Its controlled reactivity, unique selectivity in organic reactions, and compatibility with various process chemistries make it valuable across several sectors. Below, we detail verified industrial use-cases supported by established standards and process expertise. 1. API Intermediate Synthesis in Pharmaceutical ManufacturingPharmaceutical producers employ methoxydiethylborane primarily as a reductive agent or boron source in the construction of key chiral intermediates, notably during the formation of complex cyclic and heterocyclic structures. Its role is critical in the boron-mediated reduction steps within large-scale active pharmaceutical ingredient (API) synthesis, especially when chemo- and stereoselectivity are required in multi-step syntheses for drugs such as anti-cancer or CNS agents. Integrating this reagent into validated GMP routes requires precise control of reactant ratios, reaction temperature, and solvent selection due to its moisture sensitivity and reactivity towards functional groups. Industry compliance standards
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2. Agrochemical Fine Synthesis: Boronate Ester FormationProducers of modern crop protection agents utilize methoxydiethylborane during the synthesis of aryl and alkyl boronate esters, crucial intermediates in the Suzuki–Miyaura cross-coupling reaction. This enables introduction of boronic acid functions into herbicide and fungicide lead structures, facilitating downstream diversification and tuning of field efficacy profiles. On-plant pilot and industrial lines require careful reagent delivery and solvent management to avoid hydrolysis and ensure yield reproducibility at scale. Industry compliance standards
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3. Electronic Chemicals: Specialty Dopant Precursor for Semiconductor ManufacturingIntegrated device manufacturers and specialty electronic chemical suppliers use methoxydiethylborane as a boron dopant precursor during the gas-phase or liquid delivery doping of silicon and compound semiconductor wafers. The compound enables controlled p-type doping during low-pressure chemical vapor deposition (LPCVD), especially in the creation of shallow junctions and selective emitter profiles essential for advanced integrated circuits, power devices, and optoelectronic components. Purity and moisture control are closely regulated within semiconductor cleanroom process lines. Industry compliance standards
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4. Fine Fragrance and Flavor Synthesis: Regioselective HydroborationLeading aroma chemical manufacturers utilize methoxydiethylborane to achieve regioselective hydroboration of terminal and internal alkenes, a key transformation in the preparation of high-purity alcohols and aldehydes incorporated into premium flavors and fragrances. The reagent’s selectivity allows for controlled transformation of sensitive molecules, directly impacting olfactory and taste profiles in the finished compounds. Stringent food additive regulations and batch traceability are required throughout the process, with continuous feedback from QMS and sensory evaluation teams. Industry compliance standards
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In the field of organoboron chemistry, Methoxydiethylborane stands out for its unique profile and strong performance in both lab and commercial production environments. Years at the reactor line have shown that Methoxydiethylborane brings more to complex synthesis work than many realize at first glance. While boron derivatives often seem interchangeable on paper, actual process results depend on subtle differences in structure, reactivity, and handling properties that reveal themselves only with real-world use.
Manufacturing Methoxydiethylborane has taught our team how critical quality control and process discipline become with sensitive boron reagents. Raw material sourcing drives batch reproducibility, and purity checks at each step – from distillation to packaging – directly impact downstream yields for customers. Specs only tell part of the story. After years responding to troubleshooting requests from process developers and researchers, experience with batch consistency, trace impurity management, and strict moisture exclusion matter just as much as the technical data found in catalogs.
The model that we bring to market balances large-scale throughput with the flexibility to support both bulk industrial users and specialty lab-scale buyers. The chemical industry credits Methoxydiethylborane for its role in selective alkylations, reductions, and as a boron source in cross-coupling reactions. Its molecular structure (EtO)2BOMe, featuring two ethoxy groups and a methoxy group attached to boron, provides a balance that supports wide reactivity without imposing the hazardous volatility of some alternatives. People who develop pharmaceutical intermediates often call out the importance of selective reactivity – having a reagent that enables transformation without scrambling protecting groups or unwanted side products keeps syntheses short, cost-effective, and reproducible.
Every manufacturing run reveals fresh lessons about moisture control. Methoxydiethylborane, like most reagents in its class, attacks water with alarming speed. No gasket, O-ring, or seal gets a free pass. The importance of dedicated glass-lined vessels, constant nitrogen purge, and rapid transfer systems can’t be overstated. Quality in equals quality out. We have built our protocols around locked-down atmospheres and in-process monitoring, rejecting batches at the faintest trace of hydrolysis. Any lapse shows itself not just in assay numbers but in customer complaints and disrupted downstream chemistry. This is more than compliance; it is self-preservation for any supplier who values repeat business from experienced synthetic chemists.
Methoxydiethylborane delivers a blend of stability and selectivity. Many boron reagents either bring extreme reactivity or prove too sluggish for certain transformations. Methoxydiethylborane splits the difference. Its moderate Lewis acidity supports functional group tolerance. What’s more, the risk of uncontrollable exotherms or violent decomposition is substantially less compared to borohydrides or trialkyl boranes. We have seen industrial process improvement teams push for reagents offering safer handling plus predictable scale-up results, and Methoxydiethylborane answers this demand. Whether for Suzuki-Miyaura couplings, aldehyde reductions, or as a building block in borylation, our product provides that rare combination of user safety and synthetic efficiency.
Supply-side pressures are real. When disruption hits global supply lines, the ability to run consistent batch sizes and maintain buffer inventory enables us to keep customer programs on track. We design every run to lock in batch-to-batch uniformity and to withstand storage and transit with minimal reactivity loss. Commercial users may not always realize the calibration that goes into every packaging drum, from specialized liners to tamper-proof seals – each tailored to limit product exposure to ambient moisture and heat. Teams on the ground get real opportunity to see error impact long after a batch leaves our site, so open channels with R&D, QA, and logistics forms the backbone of our operation. There’s no substitute for open communication with process chemists who rely on every drum to deliver to spec.
Comparing Methoxydiethylborane to other boron reagents like triethylborane, boron trifluoride ethers, or boronic acids, distinctions arise at the reaction bench and plant floor. Triethylborane ignites on contact with air, which makes it hazardous for loading at scale and in high-throughput labs. Methoxydiethylborane’s self-stabilizing character, on the other hand, permits easier handling under inert gas, with less need for emergency ventilation or fire suppression during charging. While boronic acids and boronate esters excel in palladium-catalyzed couplings, their solid-state formulation sometimes creates challenges with dissolving or metering in continuous reactors. Our Methoxydiethylborane, supplied as a liquid, supports continuous flow and automated systems where precise dosing determines the success of the whole process. This gives synthetic and process chemists a reagent that speeds up setup and cleanup, accelerates screening and scale-out, and supports innovation in demanding environments.
The methoxy group on Methoxydiethylborane confers slightly increased electron density at boron, moderating its reactivity compared to outright trialkyl derivatives. This potentially enables reaction with certain electrophiles at lower temperature or in more basic conditions, while the ethoxy groups aid dissolution in a variety of organic solvents. We have seen pharma customers prefer our Methoxydiethylborane for routes where steric congestion or functional group complexity rules out less flexible boron sources. For those who need to pivot between pilot batches and full-scale runs, we guarantee supply stability on short lead times, supported by real data and close technical support. Our team frequently works alongside customers to optimize purification and workup steps unique to this reagent, ensuring that Methoxydiethylborane’s full value is realized at every stage of product development.
It is common for teams in complex molecule synthesis to ask for help diagnosing side reactions when moving from gram to kilogram scale. Methoxydiethylborane often features in these troubleshooting discussions because its mid-range reactivity means it can reveal or solve issues that don't show up during initial small-batch screens. One partner came to us with inconsistent conversion during key C–C bond formations. After reviewing their set-up and evaluating the grade of Methoxydiethylborane used, it turned out microtraces of residual alcohol in their solvent were consuming the borane prematurely. Tightening their solvent specs delivered the intended yield, and pilot samples matched expectations forward. Another case involved slow initiation in an alkylation. Slightly warming the reaction and using our freshly distilled Methoxydiethylborane corrected the problem, reducing impurity buildup and shaving hours off their manufacturing cycle. These stories are common, and they underline how the tiniest deviations from spec – both in our process and in customers’ operations – can echo all the way to material performance.
Not all boron reagents offer flexible solubility paired with reliable batch consistency. Methoxydiethylborane solves these problems, fitting especially well into automated systems where precise metering and minimal evaporative loss is required. For one agricultural chemistry company, this made all the difference as they optimized fungicide intermediates through a programmable reactor train. Monitors set to flag change in color and trace byproduct formation sent alerts the first time a packaging defect let in a hint of air – prompting a rapid recall of affected material and a shipment of fresh product less than 36 hours later. The customer’s feedback: a fast, resilient partner capable of reacting to process hiccups at any production scale. Our operations adapt to specialized needs whether delivering a single drum for a novel discovery or filling a railcar for long campaign runs.
Manufacturing and selling Methoxydiethylborane entails rigorous compliance work. Our operation takes seriously the evolving expectations around environmental health, occupational safety, and regional export controls. Every tank load undergoes residual solvent and impurity checks. Our EH&S teams review and update handling tools based on new regulatory data and customer safety learnings. The plant routine includes detailed training focused on controlled atmosphere transfer and gloves rated for organic reagent breakthrough. In a world of escalating control on chemical intermediates, remaining proactive on documentation and safety readiness means customers never wait for answers if a question arises from a regulatory agency or internal review.
We collaborate with third-party labs to validate detection methods for Methoxydiethylborane in environmental monitoring and industrial hygiene programs. Side-by-side review of certificates of analysis ensures the values reported reflect real, actionable numbers for those downstream. Customers appreciate transparency about origins, handling, and storage stability. This upfront clarity smooths routine audits and gives our partners more confidence to introduce Methoxydiethylborane in new applications—whether scaling green chemistry routes or upgrading an existing pharmaceutical pathway. Our own factory footprint continues to shrink through investment in closed-loop solvent systems, improved neutralization for waste streams, and fully encapsulated transfer infrastructure, all of which safeguard both our workers and the neighboring community.
Supply chain reliability affects every user of Methoxydiethylborane. We have seen global market disruptions stretch lead times and expose vulnerabilities in single-source dependencies. By investing in local networks of raw material producers, and maintaining strong second-source qualification for each input, we mitigate volatility and support customers through unexpected swings in demand. Our in-house engineering team keeps process equipment ready for quick turn-around, and we have contingency plans for logistics delays, weather disruption, or regulatory changes that can affect shipping timelines.
Synthetic and process chemists depend on hard data, honest communication, and real experience from their suppliers. Methoxydiethylborane manufacturing brings together lessons from every batch gone wrong, every investigation into slightly off-color liquid, and every customer call for last-minute supply support. For each request about how Methoxydiethylborane can strengthen the selectivity or efficiency of a reaction, our technical advisors draw from a track record forged in busy production environments and validated against the complex workflows found in top R&D facilities. We maintain an open line with process teams willing to share both their success and their challenges, so Methoxydiethylborane can evolve with their needs. Whether the ask is improved sensitivity for a late-stage pharma step, rock-steady flow through automated reactors, or reduced handling risk for scale-up, our production team is ready with insight and a willingness to walk the line from raw input to finished barrel, every time.
Few elements in the chemist’s toolkit remain as versatile, or as rigorously scrutinized, as boron reagents. Methoxydiethylborane has earned its place on bench and plant floor alike thanks to the balance it offers between potency and control. As process chemistries for specialty chemicals and advanced pharmaceuticals push boundaries, our product enables moves into previously challenging transformations, with the added reassurance of high batch-to-batch consistency and responsive technical guidance.
Over the past decade, customer feedback has shaped the way we refine and scale Methoxydiethylborane production. Asking detailed questions about reaction failure points, reviewing to-the-minute stability data, and documenting impurity drift during storage lets us make incremental but significant upgrades to purity, packaging, and delivery protocols. We are seeing more attention paid to circular chemistry, with calls for recyclable containers, reduced solvent loads, and quantified environmental performance figures – a future where Methoxydiethylborane sits in the toolkit for more sustainable synthesis. Closer customer partnerships now include joint work on closed-transfer pilot projects and real-time monitoring technologies that cut waste and speed up troubleshooting. Our job is to stay in front of these trends, ensuring every shipment is a step forward for efficient, responsible chemistry.
Demand from electronics, biotech, and crop science manufacturers is on the rise, and each sector values different aspects of Methoxydiethylborane’s capabilities. Semiconductor chemists turn to it for high purity needs in boron-doped substrates, while pharmaceutical developers appreciate its adaptability in complex molecule construction routes. As chemical synthesis becomes increasingly data-driven and automated, our investments in digital tracking and real-time quality reporting support seamless integration into customer systems.
We are developing next-generation packaging that allows for faster, safer drum changes on plant floors, reducing open handling and exposure. This builds on a foundation of closed-loop fills and transfer carts designed to prevent even a trace of water from entering finished product. Every innovation ties back to real customer use cases: fewer mishaps, lower maintenance, less downtime between runs, and a consistent reagent that saves time at every step. For customers exploring new frontiers in medical or electronics manufacturing, the ability to scale with confidence and comply with changing safety guidelines supports both innovation and peace of mind. Methoxydiethylborane is not just another bottle on a shelf—it’s a daily test of what organized, disciplined chemical manufacturing can deliver for people at the sharp edge of discovery.
Bringing Methoxydiethylborane from the reactor to the loading dock requires relentless attention to chemistry, process, and partnership. The lessons gathered from every problem solved along the way inform our output and help users push boundaries of what's possible. As manufacturers, we see each day as a new opportunity to support smarter, safer, and more effective chemical innovation. Methoxydiethylborane gives real value to those who demand more from their reagents, and we remain committed to building better products and stronger relationships for the decades ahead.