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HS Code |
275365 |
| Cas Number | 1649-58-7 |
| Molecular Formula | C9H10O2 |
| Molecular Weight | 150.18 g/mol |
| Iupac Name | 1-(2-hydroxy-4-methylphenyl)ethan-1-one |
| Synonyms | 2-Hydroxy-4-methylacetophenone, 4'-Methyl-2'-hydroxyacetophenone |
| Appearance | White to off-white crystalline powder |
| Melting Point | 64-66 °C |
| Boiling Point | 275-277 °C |
| Solubility | Soluble in organic solvents (e.g., ethanol, ether) |
| Density | 1.15 g/cm³ |
| Purity | Typically ≥98% |
| Smiles | CC1=CC(=C(C=C1)O)C(=O)C |
| Refractive Index | 1.543 (predicted) |
| Storage Conditions | Store in a cool, dry place, tightly closed |
As an accredited 2'-Hydroxy-4'-Methylacetophenone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Brown glass bottle containing 100 grams of 2'-Hydroxy-4'-Methylacetophenone, labeled with chemical name, hazard information, and handling instructions. |
| Shipping | 2'-Hydroxy-4'-Methylacetophenone is shipped in tightly sealed containers, protected from light and moisture. Standard chemical shipping procedures are followed, conforming to local and international transportation regulations. Handling requires appropriate labeling, safety documentation, and cushioning to prevent breakage. It is typically shipped at ambient temperature, unless otherwise specified by the manufacturer. |
| Storage | Store 2'-Hydroxy-4'-Methylacetophenone in a tightly sealed container, in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as strong oxidizing agents. Protect from direct sunlight and moisture. Ensure proper labeling of the container, and follow standard protocols for handling chemicals to prevent spills or accidental exposure. |
Applications of 2'-Hydroxy-4'-Methylacetophenone in Industrial Manufacturing2'-Hydroxy-4'-Methylacetophenone is a key aromatic intermediate recognized for its functional role across specialized chemical manufacturing sectors. As the original producer, we supply this material to advanced downstream facilities, where it is mainly used for its chemical reactivity, stability, and compatibility in controlled formulation systems. Below we detail the principal industrial landscapes utilizing this intermediate, with clear technical guidance for integration into precise manufacturing processes. 1. UV-Curable Coatings for ElectronicsThis compound features in photo-initiator systems for UV-curable coatings used on printed circuit boards, display units, sensor films, and compact electro-optical devices. Its structure provides efficient radical generation under UV exposure, enhancing coating speed and cross-linking density. Production strictly controls quality to ensure stable output in coatings lines where high consistency and minimized byproducts are essential to prevent yield loss or device defects. Industry compliance standards
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2. Industrial Synthesis of Pharmaceuticals (Intermediate for Ketoprofen)Downstream pharmaceutical manufacturers employ this material as a core building block in the production of nonsteroidal anti-inflammatory active ingredients, especially via Friedel–Crafts and methylation reactions. Its high purity grade ensures batch traceability, low impurity carryover, and predictable conversion during critical pharmaceutical syntheses. Integration prioritizes regulatory traceability and reproducibility for subsequent analytical release and quality audits. Industry compliance standards
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3. Fragrance Ingredients for Fine ChemicalsAromatic manufacturers utilize this intermediate in the synthesis of specific musky and floral ketone-based fragrance bases, applications favored in premium detergents, household cleaners, and luxury personal care. Its aromatic structure enables precise olfactory tuning by downstream perfumers and helps provide base-note fixative effects in finished formulas. Raw material batch consistency directly influences scent profile standardization at scale. Industry compliance standards
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4. Photographic and Imaging ChemicalsPhotographic chemical producers adopt this compound as a photosensitive intermediate for manufacturing imaging emulsions and color couplers. Trace control of isomeric purity and residual metallic catalysts is critical due to downstream impact on image clarity and shelf stability. Quality teams ensure robust documentation of each batch for traceable incorporation into sensitive production environments. Industry compliance standards
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5. High-Performance Resin Additive (for Cross-Linking Agents)In specialty polymer sectors, formulators employ this intermediate as a precursor for cross-linking modifiers to boost resin toughness, heat resistance, and dimensional stability. Integration happens at the stage of reactive resin manufacturing, where close analytical monitoring ensures absence of side products that could interfere with polymer architecture or catalytically degrade during hot-melt or injection molding processes. Industry compliance standards
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At our manufacturing facility, 2'-Hydroxy-4'-Methylacetophenone stands out as a keystone intermediate for industries that put a premium on product purity, batch-to-batch consistency, and reliable supply. We have spent years refining the synthesis and purification of this compound, guided by direct feedback from end users in sectors like fragrance, pharmaceuticals, and fine chemicals. Every batch originates from raw materials we source ourselves, and reactors running under the close supervision of our engineers. We know that nothing replaces careful quality checks—not only before packaging, but also during every phase of the process. By maintaining a transparent workflow and integrating traceability at every step, we have earned the trust of formulators who depend on our material for downstream reactions and finished goods that meet stringent standards.
Our plant typically produces 2'-Hydroxy-4'-Methylacetophenone with purity levels above 99%, supported by HPLC and GC analyses. We monitor moisture closely and keep it below 0.5%, storing the finished product in sealed, light-resistant containers. The product appears as an off-white to pale yellow crystalline powder, a detail that matters since discoloration signals side reactions or contamination. Melting point checks factor into every lot release: a sharp and repeatable value near 87-89°C offers reassurance for downstream chemists who regard melting point as a quick screen for material integrity. Particle size and flow characteristics are tailored for easy weighing and dissolving, especially by operators who work under time pressure and demand trouble-free handling. We have listened to customers working at lab scale and in kilo production, and we adapted lot sizes to meet both R&D and commercial volumes.
In workshops and production meetings, formulators often ask what makes this substance preferable to close analogues. Much comes down to the arrangement of hydroxyl and methyl groups on the aromatic ring. This particular structure brings two advantages; it boosts solubility in polar solvents, and it confers unique reactivity for downstream transformations such as etherification, ester formation, and acylation. Those targeting pharmaceutical actives appreciate how the ortho-hydroxy group can direct further substitution, while fragrance formulators note a subtlety in the aromatic note it imparts. Our teams have compared it with related substances—like 2'-Hydroxy-4'-Methoxyacetophenone—to understand why a methyl rather than a methoxy group can shift both boiling point and reactivity. These nuances drive choices in formulation labs around the world.
Feedback from partners in flavor, fragrance, and pharma underscores one reality: subtle impurities can derail whole production cycles. During collaborative projects, our chemists tracked trace byproducts—arising from possible over-alkylation or incomplete condensation—right down to the ppm level. These insights allowed us to modify reactor cooling rates and purification solvent choices, shrinking impurity profiles and supporting consistent product performance. Companies creating perfumery bases discovered that even small differences in purity translated to sharper and longer-lasting olfactory effects. Drug development teams gained confidence in our material as a stable building block, reducing the risk of unknowns derailing registration filings or late-stage development. We also learned not to chase absolute purity at the expense of yield and throughput; each use case favors a different balance, giving end users options aligned to project needs.
In scaling up production, practical lessons accumulate fast. We learned that 2'-Hydroxy-4'-Methylacetophenone, though robust, can suffer under humid storage or high temperatures. Early on, we adopted vacuum-sealed packaging and storage below 30°C, and made these measures standard across shipments. This prevents clumping and degradation, even under challenging transit conditions. We also observed that the product’s tendency to attract moisture can affect consistency in dosage—especially in automated systems. Tracking feedback from users addressing high throughput settings, we fine-tuned drying procedures and shipping logistics, limiting the delays and surprises that too often accompany specialty chemicals.
Few intermediates travel so widely across sectors. In the fragrance world, 2'-Hydroxy-4'-Methylacetophenone contributes to compositions calling for a warm, balsamic note that reflects real-world botanicals. Its moderate volatility gives perfumers flexibility, supporting both top and base notes without overpowering. On the pharmaceutical side, our clients often explore this molecule as a starting point for anti-inflammatory or anti-infective candidates, taking advantage of its chemical lability and the accessible hydroxyl group for late-stage modifications. Solubility and stability tests in water-alcohol blends confirm its flexibility for liquid and solid formulations alike—a trait formulators value in crowded process environments.
We’ve watched contract manufacturers save both time and solvent by leveraging our product’s fast dissolution rate in typical polar solvents. Such solvent efficiency translates to leaner process economics and a lower environmental impact—objectives shared by production leaders and procurement managers alike. Our relationships with labs pursuing greener chemistry suggest that derivatives of 2'-Hydroxy-4'-Methylacetophenone fit well with recent trends towards enzymatic and lower-waste processes, broadening its reach beyond the standard organic synthesis toolkit.
We commit to thorough traceability—each batch receives a unique identifier, matching supply chain details, analytical results, and retention samples. Our site operates in close alignment with current Good Manufacturing Practices for intermediates, and our documentation supports customers preparing regulatory filings or internal audits. We update analytical procedures regularly, not as a box-ticking exercise but as a response to actual process deviations or customer feedback. In past reviews, we discovered trace metal contamination linked to a reactor gasket supplier; swapping this input led to non-detectable metal content, documented and shared openly with our partners.
Inventory turnover and real-time order tracking are not abstract goals—delays disrupt production, budgets, and trust. We built our supply chain with contingency sources for critical raw materials, and our staff undergoes ongoing training in safe handling, spill response, and accurate documentation. These measures feed a culture of practical excellence, minimizing disruptions and supporting seamless audits, whether by our own teams or by clients visiting the plant.
Feedback loops between our technical team and users reveal how small changes can make big differences. In the early years, customers flagged issues with batch-to-batch color consistency, seeking reassurance that downstream reaction profiles wouldn’t drift. Chemist-to-chemist conversations led us to enhance filtration and crystallization cycles, ensuring the finished material met the expected appearance and analytical standards. These partnerships deliver solutions that prioritize long-term reliability over flash-in-the-pan improvements.
We share stability data acquired over years of real-world storage and transport, not just under ideal lab conditions. When partners faced regulatory hurdles due to undefined impurity profiles, we generated extended analytical studies—providing not only a certificate of analysis but also explanatory appendices upon request. For manufacturers transitioning to higher throughput or automation, we shared actual plant strategies for handling larger volumes, preventing bridging or settling during transfer, and cleaning lines to avoid cross-contamination. Operators on the ground know that small practical fixes can prevent hours of downtime.
Many customers ask how 2'-Hydroxy-4'-Methylacetophenone performs against isomeric acetophenones or other substituted phenolic ketones. We have benchmarked the performance of our material against industry standards in direct applications—focusing on chromatographic profile stability, shelf life, and compatibility with common co-reactants. Compared to related methoxy or ethyl derivatives, the methyl group enhances both lipophilicity and ease of removing trace residuals after reaction. As a result, product clean-up and isolation steps proceed with lower solvent demands and fewer column cycles; these incremental savings matter in scale production. We don’t view these advantages as abstract—they translate to fewer process headaches for operators and team leads concerned about project timetables.
No intermediate fits all use cases. Some clients request custom particle sizes or lower moisture grades for sensitive processes. We work with formulators to match physical characteristics to the realities of sieving, weighing, and dosing, driven by practical insights from users rather than rigid standardization. A collaborative approach, built on years of joint problem-solving, has anchored our role as a trusted manufacturer—not a speculative supplier detached from what really happens in the plant.
As manufacturers, we understand that every production run, shipping decision, and QA protocol shapes not just the immediate quality of 2'-Hydroxy-4'-Methylacetophenone, but also the experience and reputations of our downstream partners. Transparency does not end at a clean certificate of analysis. It means sharing lot records when requested, addressing concerns about trace contaminants, and adapting our approach as client needs change. We respond directly to audits, support product formulation risk assessments, and maintain a feedback system that surfaces even minor complaints.
Environmental impact remains front of mind throughout our operations. We have implemented closed-system handling for all volatile solvents and recover process water for re-use, reducing the overall footprint of each kilogram produced. Technical teams monitor waste output and optimize synthetic routes to minimize byproduct generation. Where practical, we pursue greener intermediates and adopt catalytic steps to lower energy consumption. These efforts meet regulatory demands, but more importantly, support a vision of chemical manufacturing responsive to the concerns of today’s sustainability-conscious market.
Clients and partners depend on us not only for consistent product, but also for relevant technical guidance rooted in firsthand experience. We field questions on everything from solubility limits in specialty solvents to the interpretation of IR and NMR spectra for preformulation work. Our chemists have run the same equipment as many of our users, and our technical recommendations come from actual plant trial data, not generic advice. We remain available to troubleshoot—both in writing and, where circumstances allow, on-site.
As demands evolve, we introduce process modifications—using automation for higher throughput lots or revisiting filtration protocols to address new impurity challenges. Customer requests for regulatory support or new certification standards push us to stay ahead of changing compliance landscapes. Behind every improvement stands a team grounded in practice and committed to the shared success of our users. We recognize that each advance in our plant supports advances in yours, carrying benefits that ripple down complex value chains.
We built our reputation on relationships and results, not on the language of ordinary product lists or impersonal datasheets. Each order for 2'-Hydroxy-4'-Methylacetophenone carries our experience as direct producers—our joint history with partners confronting technical, commercial, and regulatory challenges head-on. This approach demands ongoing investment in analytical capability, infrastructure, and staff training. It means taking pride in shipments that arrive as expected, with the support and documentation to keep your lines running.
As new applications for 2'-Hydroxy-4'-Methylacetophenone emerge—in agrochemicals, specialty polymers, or advanced materials—we engage deeply with researchers and process engineers to align our material attributes with real-world needs. We see ourselves as participants, not just suppliers, in a community that advances the frontiers of applied chemistry. Through this commitment, we continue to refine, respond, and support, helping our product remain a dependable choice for partners who refuse to compromise on quality or reliability.