Products

1,2-Dibromo-3-Butanone

    • Product Name: 1,2-Dibromo-3-Butanone
    • Alias: 1,2-Dibromobutan-3-one
    • Einecs: 259-986-3
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 407185
    Iupac Name 1,2-Dibromobutan-3-one
    Molecular Formula C4H6Br2O
    Molar Mass 241.90 g/mol
    Cas Number 816-40-0
    Appearance Colorless to pale yellow liquid
    Boiling Point 85-88°C at 13 mmHg
    Density 2.21 g/cm³
    Solubility In Water Slightly soluble
    Smiles CC(=O)C(Br)CBr
    Inchi InChI=1S/C4H6Br2O/c1-3(7)4(6)2-5/h4H,2H2,1H3

    As an accredited 1,2-Dibromo-3-Butanone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 100 grams of 1,2-Dibromo-3-Butanone, sealed with a secure cap, labeled with hazard warnings.
    Shipping **Shipping for 1,2-Dibromo-3-Butanone:** This chemical is shipped in tightly sealed containers, compliant with hazardous material regulations. Packaging prevents leakage and minimizes exposure. It is transported as a regulated substance, commonly under UN 3265, Corrosive Liquid, Acidic, Organic, n.o.s. (1,2-Dibromo-3-Butanone), and requires accompanying safety documentation and proper labeling.
    Storage 1,2-Dibromo-3-butanone should be stored in a tightly closed container, kept in a cool, dry, and well-ventilated area, away from direct sunlight. Store separately from incompatible substances such as strong oxidizers and bases. Ensure the container is clearly labeled and avoid moisture exposure. Use secondary containment to prevent accidental leaks or spills, and access should be restricted to trained personnel only.
    Application of 1,2-Dibromo-3-Butanone
    Purity 98%: 1,2-Dibromo-3-Butanone with purity 98% is used in pharmaceutical intermediate synthesis, where high chemical purity ensures optimal yield and minimized by-product formation. Melting point 60°C: 1,2-Dibromo-3-Butanone with a melting point of 60°C is used in temperature-controlled organic reactions, where this property allows precise solid-to-liquid phase transitions. Molecular weight 229.91 g/mol: 1,2-Dibromo-3-Butanone with a molecular weight of 229.91 g/mol is used in fine chemical manufacturing, where accurate dosing and reaction stoichiometry are critical. Stability temperature 40°C: 1,2-Dibromo-3-Butanone with a stability temperature of 40°C is used in industrial storage systems, where its thermal stability prevents decomposition and ensures long shelf life. Reactivity (high alpha-halo reactivity): 1,2-Dibromo-3-Butanone with high alpha-halo reactivity is used in alkylation reactions, where this feature enables efficient introduction of functional groups. Liquid state: 1,2-Dibromo-3-Butanone in liquid state is used in analytical chemistry protocols, where its ease of handling and mixing accelerates sample preparation steps. Low viscosity: 1,2-Dibromo-3-Butanone with low viscosity is used in flow chemistry equipment, where it ensures consistent and controlled reagent delivery. Solubility in ethanol: 1,2-Dibromo-3-Butanone with solubility in ethanol is used in multicomponent solvent systems, where complete dissolution reduces formulation complexity.
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    Certification & Compliance
    More Introduction

    Introducing 1,2-Dibromo-3-Butanone: Our Approach to Precise Chemical Manufacturing

    Our Firsthand Experience with 1,2-Dibromo-3-Butanone

    Over the years in the lab and on the production floor, we have watched molecules like 1,2-Dibromo-3-Butanone open new doors for chemical research and industrial synthesis. This compound, with its bromo groups and reactive ketone moiety, consistently provides an edge for researchers and manufacturers needing specific reactivity patterns. Every batch we’ve produced, we commit ourselves to meet the standards the scientific community expects. Our chemists know that these details matter not just for academic protocols, but for real production yields and product consistency.

    Specification and Manufacturing Standards

    We manufacture 1,2-Dibromo-3-Butanone to rigorous internal benchmarks, using high-purity precursors and controlled halogenation steps. At each stage of synthesis, from initial butanone backbone preparation to bromination, we monitor key conditions to control side products. Our analytical chemists rely on NMR, HPLC, and GC techniques not just for purity checks but to fine-tune every production cycle based on recent batch performance. A typical sample from our line shows a crisp profile, limited amounts of dibromo byproducts, and minimal contamination from over-bromination.

    Our plant delivers product either as a neat liquid or in stabilized solution—this results from years of feedback from customers concerned about ease of handling and storage over long periods. Direct feedback has led us to streamline post-synthesis purification, especially for researchers synthesizing downstream intermediates where impurities amplify in later steps. With each run, quality assurance personnel check consistency in color, clarity, and reactivity, documenting all findings in digital batch records accessible for customer audits.

    Application in Industrial and Research Settings

    Our team sees 1,2-Dibromo-3-Butanone regularly drive success in both specialized academic research and commercial process chemistry. Some buyers focus on its role as a valuable intermediate for pharmaceuticals, where selective bromination avoids tedious protection-deprotection cycles. Others apply it as a building block in agrochemical development. Both rely not simply on the molecule but on batch-to-batch reliability and reactivity, especially where scale-up pressures expose flaws in lesser-sourced materials.

    We’ve watched companies use this compound as a synthon in heterocycle formation, taking advantage of its functionalized backbone to step quickly toward targets otherwise requiring multiple synthetic steps. The ability to introduce the dibromo motif at a defined stage often reduces overall waste, especially in modern “green” protocols. Technicians in our network have recounted how the compound’s reactivity streamlines purification efforts downstream, notably in reactions where selectivity simplifies workup, reducing solvent consumption.

    Comparison with Similar Products: Lessons Learned

    Our years producing haloketone intermediates let us make some side-by-side comparisons worth sharing. 1,2-Dibromo-3-Butanone stands apart from its monochloro or dibromo analogs due to the pattern of bromination combined with the reactive carbonyl. Some practitioners reach first for simple dibromoacetone or dibromoethanone, only to circle back to our product when they need bromo groups at both the 1 and 2 positions. Selectivity here makes the difference between a successful synthesis and a costly rerun.

    Unlike 1,2-dichloro-3-butanone, this compound offers higher reactivity toward nucleophiles, especially in cross-coupling reactions, and works with less forcing conditions. In the hands of skilled synthetic chemists, the unique substitution pattern avoids the pitfalls of unwanted alpha-elimination common in related structures. Besides, bromides as leaving groups beat chlorides for displacement chemistry, reducing catalyst loadings and sometimes even reaction time. We’ve supported teams who switched after struggles with inconsistent results from others—clarity in expected performance keeps research timelines on track.

    Daily Realities in Large-Scale Manufacturing

    Every batch in our facility draws from lessons built over countless reactions. The bromination process by nature raises challenges; containment of byproducts and careful manipulation under controlled temperatures matter not just for the safety team but also production efficiency. Personal experience tells us that careful dry conditions during synthesis limit hydrolysis and help achieve a clean, isolated product. Years of dealing with variable supply streams for starting materials convinced us to keep strict controls on raw material quality. Our team uses multiple solvent washes and fractionated distillation where needed, responding to the types of impurities that only years of hands-on work teach you to spot.

    Bottle filling, capping, and storage protocols stem from requests by our customer partners—who in the past shared problems with leaching, vapor loss, or crystallization during transport. These concerns prompt us to run stress tests in lab storage simulators, so end users receive product that stands up through customs and distribution chains. Sulfide stabilization agents or inert gas overpacking sometimes address stubborn storage challenges, always with batch-to-batch consistency in mind.

    Regulatory Attention and Compliance

    Working with chemicals like 1,2-Dibromo-3-Butanone, compliance isn’t paperwork for us—it shapes every production decision. Our documentation team logs every step, from source of elemental bromine all the way through to shipping manifests, to match international expectations. Recent regulatory changes in certain regions require traceability and documented minimization of environmental discharge, so every gallon from our line comes with a trail that auditors appreciate. Our internal environmental task force actively adapts to changing regulatory landscapes, reviewing effluent handling and emission controls on a routine cycle, so end users have peace of mind knowing all upstream handling aligns with modern expectations.

    We have seen the regulatory shift away from vague certificates to tightly specified documentation packages. Our standard practice now includes detailed certificates of analysis, impurity mapping, MSDS updates, and on-demand access to all documentation by regulated clients. We also participate in voluntary auditing projects and engage with regional chemical safety working groups to anticipate changes before they move from proposal to enforcement.

    Challenges in Supply and Sourcing

    Global supply chains for brominated intermediates rarely run smooth. Shortages of bromine or precursor butanone from geopolitical situations or parent companies upstream sometimes hit the markets hard. Our plant learned from past disruptions; we maintain strategic reserves of active precursors and routinely place advance orders for consumables. Direct relationships with bromine manufacturers keep communication fast and prices stable for our customers, even when volatility hits commodity markets. Customers counting on prompt turnaround know that our finished goods inventory doesn’t rely on last-minute production or spot-market purchases.

    We’ve spent years building up a trusted supplier network for containers, packaging materials, and hazard labeling, which reduce the risk of shipment holdups or rejected lots at international borders. These hands-on investments help secure product pipelines and protect customer timelines.

    End-User Experiences—From Lab Bench to Pilot Plant

    Many buyers share their experiences scaling laboratory syntheses to kilogram or ton quantities. Often, products sourced from bulk suppliers in other countries fall short on technical benchmarking—unexpected impurities or out-of-specification water content creep in, derailing both research and production. We address this with open communication. Our technical support team provides processing recommendations tailored to customer input about reaction parameters, solvent usage, and product isolation. Our approach has reduced technical delays for customers moving from beaker-scale through pilot plant.

    By staying accessible and responsive, we have been able to save synthetic projects from delays caused by surprises in material behavior or sudden changes in supply. Regular product feedback pushes us to adapt purification techniques and update technical bulletins, so users don’t feel they’re gambling with their next major synthesis run.

    Improving Downstream Chemistry—Real Results

    Researchers both in-house and across our client network bring up how predictable reactivity in 1,2-Dibromo-3-Butanone simplifies route scouting. The compound’s pattern of bromine substitution lets medicinal chemistry groups tackle regioselective transformations with consistent results, cutting out troubleshooting steps that arise from less selective alternatives. For users pushing into process optimization or regulatory submission, consistent byproduct profiles and impurity mapping mean every kilo counts toward their end goals without extra qualification testing.

    We rely on feedback from those patenting new derivatives or launching safety assessments to update our production notes. Whether developers are introducing new halogenated side chains or ligands, or working through pilot campaigns for pharmaceutical leads, the starting material’s reliability carries downstream into process reproducibility, regulatory navigation, and overall project timelines. Over the years, several success stories in our files began with researchers transitioning from basic in-house prep to our industrial-scale product—seeing project timelines compressed and overhead dropped dramatically.

    Environmental Commitments in Modern Production

    With increasing scrutiny on chemical waste, we keep environmental responsibility central to our operation. Our facility homes in on solvent recovery, closed-loop cooling, and careful containment of brominated waste. Engineers and waste management teams conduct root-cause investigations anytime process controls drift, ensuring every kilogram of input material sees maximum conversion and minimum escape to the environment. Customers with green procurement policies value the transparency in our process maps and are quick to audit disposal records, which we’ve cultivated for straightforward access and long-term safety.

    We use best practices from leading petrochemical and fine chemical sectors to minimize emissions and avoid legacy issues from older bromination technologies. Onsite sensors alert operators at the first deviation, all the way from vent lines to wastewater tanks. This hands-on commitment means consumers know their sourcing doesn’t come at the cost of local communities or regulatory sanctions.

    Continuous Improvement and Customer Partnerships

    Every production year brings new insight from the field. By encouraging open dialogue with end-users, we refine specifications not in the abstract, but to address frequent, real-world hurdles. Maintenance engineers and process chemists from customer firms share detailed operational snapshots after every campaign, giving us eyes into diverse applications—from organometallic synthesis to advanced materials labs—so improvements aren’t locked into just one discipline. Whether a customer updates us about a faster reaction profile, or flags a minor shift in melting point, our team takes it back to production, reviewing procedures and updating batch records.

    Recent discussions with industrial clients led us to adjust the drying step in our process. Tweaks to vacuum depths and residual solvent controls have not only improved product stability, but also cut costs for our own operation, bringing benefits back around to every customer invoice. Such practical updates don’t just build customer loyalty, but let us work as partners with the scientific community, not just anonymous suppliers.

    Why 1,2-Dibromo-3-Butanone Remains Our Standout Haloketone

    Throughout the years, our facility has synthesized and handled a roster of halogenated ketones. Among these, 1,2-Dibromo-3-Butanone consistently stands out. Its unique balance of reactivity, selectivity, and predictable performance roots not just in the molecule itself but in the way it is produced. By manufacturing to a standard born from experience—not simply datasheet minimums or regulatory baselines—we deliver a product whose value travels up and down the supply chain.

    Whether a researcher stares down a tight deadline for a SAR campaign, or a process chemist works to scale up a valuable precursor, having a reliable, high-quality intermediate makes every day at the bench smoother. Our drive to support these teams isn’t a side project or sales pitch, it’s the result of years walking the same path, troubleshooting the same challenges, and learning that in chemistry, consistency and communication fuel progress.

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