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HS Code |
136736 |
| Chemicalname | 2'-Hydroxyacetophenone |
| Casnumber | 118-93-4 |
| Molecularformula | C8H8O2 |
| Molecularweight | 136.15 g/mol |
| Appearance | White to pale yellow crystalline solid |
| Meltingpoint | 80-83 °C |
| Boilingpoint | 280 °C |
| Density | 1.17 g/cm3 |
| Solubilityinwater | Slightly soluble |
| Flashpoint | 124 °C |
| Iupacname | 1-(2-hydroxyphenyl)ethan-1-one |
| Smiles | CC(=O)C1=CC=CC=C1O |
As an accredited 2'-Hydroxyacetophenone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle containing 100 grams, sealed with a screw cap, bearing hazard labels and detailed chemical identification on the exterior. |
| Shipping | 2'-Hydroxyacetophenone is typically shipped in tightly sealed containers to prevent moisture absorption and contamination. It should be handled as a chemical substance, following proper safety precautions. Shipping is generally by road, air, or sea under standard chemical transport regulations, ensuring the container remains upright and stored at ambient temperature, away from direct sunlight. |
| Storage | 2'-Hydroxyacetophenone should be stored in a tightly closed container, in a cool, dry, and well-ventilated area away from sources of ignition and direct sunlight. Keep it away from strong oxidizing agents, acids, and bases. Store at room temperature, and ensure that the chemical is properly labeled. Follow all appropriate safety protocols for handling and storage. |
Applications of 2'-Hydroxyacetophenone in Industrial ManufacturingAs a direct manufacturer, we supply 2'-Hydroxyacetophenone to specialized industrial sectors that require consistent quality and certified formulation performance. Our customers rely on this material for its well-established and verified role in selected downstream production processes, where batch control, traceability, and compliance with industry-specific standards are critical. Below, we outline major end-use scenarios where the material contributes distinctively in composition, processing, and compliance. 1. Fragrance and Aroma Chemical SynthesisLeading fragrance compounders utilize 2'-Hydroxyacetophenone as a key intermediate in the synthesis of musk, woody, and floral base notes. During the construction of fine fragrances, its phenolic structure allows predictable reactivity in Friedel–Crafts acylation and etherification reactions, forming the core of molecules such as ethyl phenyl ethers and synthetic musks. Accurate dosage is essential to achieve target olfactory intensity and to prevent batch-to-batch aroma drift; formulators regulate usage in line with IFRA restrictions and cosmetic ingredient safety guidelines. Industry compliance standards
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2. Pharmaceutical Intermediate (API Synthesis)Producers of active pharmaceutical ingredients (APIs) use 2'-Hydroxyacetophenone as a specialized intermediate in the fabrication of analgesic and antipyretic drugs, notably for its efficacy in constructing benzopyrone and chromone scaffolds through condensation and cyclization steps. Material handling follows GMP controls, as the intermediate must meet both purity and residual solvent specifications tailored for regulated drug synthesis. Industry compliance standards
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3. UV Absorber and Stabilizer Additive for PolymersPolymer compounders employ 2'-Hydroxyacetophenone as an essential UV absorber and photostabilizing component in specialty plastics, where it serves to inhibit photodegradation, yellowing, and loss of mechanical properties under prolonged UV exposure. The compound provides high compatibility for transparent and colored resins, and its performance is documented in accelerated weathering studies, supporting compliance with industry-specific durability and migration limits. Industry compliance standards
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4. Fine Chemical Intermediate for Agrochemical SynthesisIn the crop protection sector, 2'-Hydroxyacetophenone functions as an intermediate for synthesizing select herbicides and plant growth regulators. Agrochemical manufacturers value its reactivity for forming substituted chalcones and related building blocks, which are subsequently elaborated into end-use active compounds. Material intake adheres to tight QC on impurity profile and batch traceability, reflecting stewardship expectations for downstream regulated registration dossiers. Industry compliance standards
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5. Organic Synthesis Intermediate for Dyes and PigmentsProducers of azo and anthraquinone dyes incorporate 2'-Hydroxyacetophenone as a nucleophilic coupling partner in multi-step processes to generate bright, stable colorants. Its phenolic and ketone functionalities allow precise control over substituent placement and color properties, aiding in the formulation of high-purity pigments for stable, lightfast color applications. Strict control of metallic and organic contaminant levels supports pigment application in global textile and ink markets. Industry compliance standards
Typical usage ratio
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Competitive 2'-Hydroxyacetophenone prices that fit your budget—flexible terms and customized quotes for every order.
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As a chemical manufacturer with decades of hands-on production experience, I get to know every nuance of the materials we bring to market. 2'-Hydroxyacetophenone isn’t just another bulk chemical we pack into drums. This compound stands out for its versatility and reliable performance across multiple industries, from fragrance synthesis to pharmaceutical intermediates. Hands-on research, years of batch analysis, and close collaboration with users across different applications have shaped every stage of its production at our facility.
We deliver 2'-Hydroxyacetophenone in grades appreciated by seasoned chemists and demanding industrial users alike. Our model focuses on a purity specification of not less than 99%, typically confirmed by GC and HPLC on every lot before it leaves our reactors. Consistent melting point readings between 82 and 86°C confirm batch stability; careful monitoring of residual solvents during drying ensures the absence of volatile contamination, which can complicate downstream reactions.
Control at every step—recrystallization, filtration, and packaging—allows us to avoid introducing inconsistent isomer profiles. Each batch produces a pale, faintly yellow crystalline solid. Trace impurity management has become a priority here; for instance, we regularly encounter competitive material with detectable levels of 2,6-dihydroxyacetophenone, which behaves unpredictably in both aroma and pharmaceutical applications. Close attention to aromatic substitution, and regular verification with both FTIR and NMR means our output remains consistent, lot after lot.
One lesson we’ve learned over years of manufacturing is that users of 2'-Hydroxyacetophenone rely on the subtle differences in quality between batches. In perfumery, the faint aromatic profile—delicate and long-lasting—can shift if impurity levels move outside narrow boundaries. We work with small fragrance houses, supporting their research teams with material that blends smoothly into musky and powdery scent bases. Instances where a competitor’s lower-purity variant leads to off-notes in violet or vanilla accords reinforce the importance of high-grade product.
Pharmaceutical intermediates make up our largest end-use sector. Teams engaged in heterocyclic synthesis or benzofuran intermediates often comment on the difference high-purity 2'-Hydroxyacetophenone makes for yield and downstream purification demands. In one pilot project, researchers experienced substantial column fouling and side-product formation with other suppliers’ product, only to discover our more carefully managed impurity profile eliminated these obstacles. Unwanted chlorinated or nitroaromatic residues, often traceable to shortcut manufacturing methods, can sabotage months of lab work or disrupt process validation campaigns.
Beyond these sectors, 2'-Hydroxyacetophenone features in the synthesis of UV-absorbing compounds and selected agrochemical actives. Customers in these fields have come to value our ability to fine-tune process consistency, resulting in improved reproducibility in the manufacture of downstream targets. We’ve hosted technical visits where formulation chemists traced small deviations in batch performance to upstream quality issues with this raw material.
It sometimes surprises those outside the industry just how much practical experience influences quality. Large traders or resellers purchase material from diverse global sources—inevitably, this introduces variable impurity profiles, unknown storage histories, and cross-contamination risks. Our direct manufacturing process, run in dedicated equipment, insulates against these common hazards. For instance, trace cross-contamination with phenolic derivatives has caused headaches in both R&D and production for companies using off-brand supplies; our process controls, implemented at each stage, have protected formulators from such disruptions.
We’ve participated in root-cause investigations with partners who traced persistent discoloration in their finished goods back to unstable intermediates, sometimes due to oxidation-sensitive material shipped long distances without temperature control. Direct shipment from the production line in sealed drums, with strict adherence to FIFO stock management, has proven an effective safeguard. These sound basic details rarely make marketing copy, but they separate high-integrity product from commodity-grade alternatives.
Our production facility integrates solvent-recovery and in-process recycling for mother liquors, reducing waste and ensuring better process economics. Years of practical investment in these technologies means we can deliver competitive pricing without cutting corners on process control or raw material selection. Feedback from partner plants in Europe and the Americas often highlights the lower environmental burdens—less waste incineration, reduced liquid effluents, and correspondingly simplified local compliance—when using our 2'-Hydroxyacetophenone compared with less rigorously managed alternatives.
Some buyers push for ultra-low cost but encounter hidden costs downstream. Troubleshooting days lost on hydrogenation steps due to nickel fouling, higher solvent loads for purification, or increased downtime due to gunky process lines, all add up quickly. We’ve worked alongside process chemists to run comparative pilot trials, confirming fewer column changes, reduced waste solvent disposal, and tighter product recoveries. Less rework saves time, cuts cost, and reduces environmental footprint at scale.
Quality isn’t a box we tick after the fact, but an active, daily pursuit. In our lab, analysts review each lot with strict adherence to pre-approved specifications, cross-checking against validated analytical standards. Crystallinity and color consistency are assessed visually, then correlated to digital image records from prior runs—real-time database systems support rapid traceability and deviation tracking.
Our plant has wrung hard-earned lessons from decades of seasonal humidity shifts, raw material fluctuations, and shifting safety standards. As regulatory expectations move, we adapt every validation protocol—from analytical SOPs to in-process monitoring. We run extra QC checks after thunderstorms or power interruptions, guarding against subtle undetected process changes. Once, after local sourcing changes for acetophenone feedstock, we discovered a persistent trace benzaldehyde contamination; rapid, root-cause-driven intervention restored product integrity before a single lot left the line. Those who make chemicals every day recognize unpredictable variables and build resilience into every batch.
Our job doesn’t end with toll-forming and dispatch. We keep technical liaison teams available for customers scaling up new formulations, offering analytical support on unfamiliar impurity profiles or assisting with regulatory file preparation. For example, in one collaboration with a specialty flavors producer transitioning to large-batch syntheses, we ran parallel process validation studies to help them adjust reaction conditions for yield and purity using our consistent material.
Many R&D groups still rely on us for timely answers about reactivity, storage, and pre-mix strategies tailored to the material’s specific characteristics. As bulk storage tank design shifted in recent years, we increased technical documentation on headspace management and oxidation mitigation for 2'-Hydroxyacetophenone. Noticing an uptick in summer storage complaints from tropical regions, we revised dispatch protocols to minimize transit times and introduced more robust drum liners. Our feedback loop with users means every innovation is grounded in true application challenges.
Some buyers ask us to compare 2'-Hydroxyacetophenone with related acetophenone derivatives, such as 4'-Hydroxyacetophenone or the dimethoxy series. Years of head-to-head study reveal significantly different behavior in both synthesis and end-use. The ortho-hydroxyl group on our product gives higher reactivity in Friedel–Crafts acylations and greater complexity in fragrance compositions. By contrast, the para isomer resists certain benzylation or etherification reactions and produces distinctly different aroma notes.
We routinely evaluate material performance in condensation and cyclization reactions. With 2'-Hydroxyacetophenone, process engineers often comment on the unique product profiles—higher yields of benzofurans, fewer by-products on scale-up, and easier separation from reaction mixtures. For hydroxyacetophenones bearing multiple substitutions, such as the 2,4-dihydroxy form, the added hydroxyl group lowers specificity and complicates purification, leading to additional solvent use and troublesome waste streams. Real-world customer feedback confirms these distinctions, often after unfortunate missteps with cheaper analogs.
Lab-scale promise means little if it fails under industrial conditions. Our multi-ton reactors and automated, jacketed crystallization systems keep batch-to-batch performance stable regardless of season or surge demand. Early on, some customers tried blending material from multiple sources to optimize cost, but soon switched to our single-source supply following a string of process upsets and yield shortfalls. Uniform crystallinity, homogenous particle size, and tight control of post-filtration drying conditions have all proven necessary for smooth processing, which only an actively engaged manufacturer can guarantee.
Changes in global logistics have put supply security at a premium. We run multi-shift operations, maintain reserve raw material stocks, and keep several months’ finished goods inventory to cushion supply chain shocks. As a manufacturer, responding to emergency upticks in demand—cycles of pandemic-driven pharma stockpiling or sudden spikes in perfumery orders—requires fast decision-making, not a trading intermediary’s long chain of approvals. Our direct control ensures production scheduling can flex to support priority needs.
Regulatory expectations for aromatic intermediates continue to evolve rapidly, whether for REACH, TSCA, or similar local frameworks. As a manufacturer, we maintain full traceability from each incoming raw material to final shipment. Analytical dossiers for 2'-Hydroxyacetophenone stretch back years, archiving not just COAs but verified third-party analysis, change control histories, and contamination event logs. This documentation gives regulatory teams at customer sites confidence during audits, and smooths the path to new product approvals.
Some competitors offer outsourced or repacked material, lacking full historical chain-of-custody. For longtime customers, our detailed documentation—paired with direct access to our technical and safety teams—helps deal quickly with buyer quality programs or government inspections. We field requests for past impurity trend data, method validation protocols, and late changes in specifications as market requirements shift. Rapid, transparent documentation means smoother compliance and fewer surprises.
Chemical manufacturing comes with direct responsibility for environmental and occupational safety—which we treat as core obligations, not afterthoughts. Our 2'-Hydroxyacetophenone process avoids high-hazard reagents and runs under closed-system controls, limiting operator exposure and fugitive emissions. We’ve invested in on-site recovery units, reducing solvent use year over year even as volumes increase.
Waste minimization isn’t just a regulatory check; it’s a practice rooted in daily performance monitoring and ongoing investment in cleaner process technology. We track every kilogram of output, recycle as much mother liquor and filtrate as modern process controls allow, and update emissions abatement systems on a strict schedule. This attention to safe and efficient manufacturing ensures that users get material with a documented, trustworthy environmental profile—an increasingly important asset for corporate sustainability programs and green chemistry initiatives.
Markets and technical requirements keep evolving. Fluctuations in raw material markets, shifts in consumer expectations, and the need for both higher purity and more transparent supply all require active adaptation. We monitor not just impurity trends and reagent availability, but also end-market signals from customers large and small. Investments in plant upgrades, digital traceability, and customer-focused analytical support all come in response to real-world feedback.
We support customers confronted with supply risk by keeping diversified production flexibility—so that even in turbulent times, those who depend on our 2'-Hydroxyacetophenone get timely, reliable, and consistent shipments. Ongoing dialogue, careful recordkeeping, and honest engagement with every partner large or small are the foundation of our approach.
Over years of manufacturing and problem-solving, we’ve built deep expertise in the production, handling, and end-use support of 2'-Hydroxyacetophenone. Our facility’s hands-on commitment—real quality checks, direct customer support, and a mindset of continuous improvement—has earned trust across markets. Regulatory compliance, process transparency, and consistent technical communication keep us one step ahead of emerging challenges and enable us to deliver more than just material: we offer reliability grounded in experience.
Whether your focus lies in flavors and fragrances, pharmaceuticals, or advanced materials synthesis, the differences in quality, service, and expertise become very real at scale. A manufacturer’s perspective isn't just about technical detail—it is about understanding how the chemistry affects each step of your process and how small improvements upstream translate into measurable benefit for you. Our approach with 2'-Hydroxyacetophenone proves that production grounded in know-how, transparency, and daily commitment offers a decisive edge for every customer.