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HS Code |
225819 |
| Name | 2-Hydroxy-1-Naphthaldehyde |
| Cas Number | 708-24-9 |
| Molecular Formula | C11H8O2 |
| Molecular Weight | 172.18 g/mol |
| Appearance | Yellow to orange crystalline solid |
| Melting Point | 75-79 °C |
| Boiling Point | 356 °C |
| Solubility | Slightly soluble in water; soluble in organic solvents |
| Density | 1.254 g/cm³ |
| Purity | Typically ≥98% |
| Iupac Name | 2-hydroxy-1-naphthaldehyde |
| Synonyms | 2-Formyl-1-naphthol |
As an accredited 2-Hydroxy-1-Naphthaldehyde factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging contains 25 grams of 2-Hydroxy-1-Naphthaldehyde, securely sealed in an amber glass bottle with a clear label. |
| Shipping | 2-Hydroxy-1-Naphthaldehyde is shipped in tightly sealed containers to prevent moisture and light exposure. It should be packed according to chemical safety regulations, transported as a non-hazardous organic compound, and kept away from incompatible substances. Proper labeling and documentation are required for safe handling and to comply with international shipping standards. |
| Storage | 2-Hydroxy-1-Naphthaldehyde should be stored in a tightly closed container in a cool, dry, and well-ventilated area, away from direct sunlight and incompatible substances such as strong oxidizers and acids. Avoid exposure to moisture. Ensure proper labeling and keep away from heat sources and ignition points. Use appropriate personal protective equipment when handling and transferring the chemical. |
Applications of 2-Hydroxy-1-Naphthaldehyde in Industrial ManufacturingOur consistent production and technical expertise in 2-Hydroxy-1-Naphthaldehyde support a range of advanced industrial uses, particularly in high-value specialty chemicals and life sciences processes. We collaborate directly with formulators and manufacturers to optimize production flows and meet strict regulatory and performance criteria. Below, we detail core commercialization scenarios where our material delivers proven functionality and compliance assurance. 1. Pharmaceutical Intermediate for Active Pharmaceutical Ingredients (APIs)2-Hydroxy-1-Naphthaldehyde functions as a key carbonyl building block in the synthesis of antimalarial, antiviral, and antimicrobial APIs, where defined aromatic aldehyde substitution patterns are required. During route scouting and process optimization, contract manufacturers integrate this compound at precise condensation or cyclization steps, ensuring reliable batch quality and regulatory traceability from raw material to patient-ready pharmaceuticals. Downstream process compatibility and impurity control remain central considerations throughout synthesis scale-up and validation. Industry compliance standards
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2. Chelating Ligand Precursor for Metal Complex CatalystsChemical manufacturers use our product as a precursor for synthesizing functionalized Schiff-base ligands, vital in the assembly of transition metal complexes for homogeneous catalysis. Precise control over aldehydic group reactivity enables high ligand purity, directly influencing catalyst activity and selectivity. Production settings demand batch-to-batch consistency and compliance with quality auditing standards for catalyst supply to pharmaceutical and polymer sectors. Industry compliance standards
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3. Analytical Reagents for Metal Ion Detection2-Hydroxy-1-Naphthaldehyde is incorporated in the manufacture of analytical reagents used for spectrophotometric and visual colorimetric metal ion assays, particularly for Fe(III), Zn(II), and Cu(II) ions in environmental, water treatment, and food testing sectors. High purity material is essential to prevent background interference in absorbance and fluorescence methods. Purified lots support validated reagent kits deployed under regulated laboratory conditions. Industry compliance standards
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4. Intermediate for Organic Pigment SynthesisAs a specialized naphthalene derivative, 2-Hydroxy-1-Naphthaldehyde is employed by pigment producers in the construction of fastness-improved, high-tinctorial-strength organic pigments, particularly through condensation with aromatic amines or hydrazines to form extended chromophores. Manufacturers require strict control of isomeric purity, minimizing by-product formation in large-scale colorant production. Industry compliance standards
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5. Synthesis of Agrochemical IntermediatesThis material serves crop protection and agrochemical formulators as a reagent in the formation of heterocyclic intermediates, including precursors to fungicidal and insecticidal agents where aromatic aldehyde-substituted scaffolds are key to activity optimization. Traceability from raw material intake through intermediate isolation contributes to certification under agricultural chemical regulations. Industry compliance standards
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Every day on the manufacturing floor, we handle the process that turns raw naphthalene into 2-Hydroxy-1-Naphthaldehyde. We apply careful filtration and purification from the ground up, always mindful of maintaining consistent purity and color. Unlike the many resellers out there, we see the reaction with our own eyes, monitor crystallization, and catch those signs when a batch achieves that benchmark clarity. It’s not lost on us that if impurities slip through—small things that might look trivial under the naked eye—they can cause trouble for someone down the line in a lab, a dye plant, or a pharmaceutical research site. That sense of responsibility lives with us from the day the order is placed until it sits sealed, ready for shipment.
We’ve run this process for years. Over time, even a few changes in temperature during synthesis, or a shortcut on distillation, can mean the difference between a yellowing powder and the brilliant ivory hue that experienced eyes look for. Even a small deviation in the ortho Isomer content can send a ripple that’s hard to correct later in a formulation or a new compound discovery. Since we oversee every step, we own both the risks and the pride that come with maintaining the highest standard. No middleman ever feels that pressure quite the same way.
We make 2-Hydroxy-1-Naphthaldehyde to be more than a line on an inventory list. With a controlled melting range just above 87°C and precise chemical purity confirmed by each lot, our product doesn’t just meet a specification—it consistently matches expectations of researchers and manufacturers running split-second reactions. Because purity and stability are essential, we’ve equipped our labs with modern analyzers to check every batch for moisture, residual solvents, and heavy trace elements. It’s not enough to use a high-purity starting material; ongoing vigilance during each step—reflection, precipitation, vacuum drying—keeps our output at the level demanded by synthetic chemists and industrial users.
Unlike some off-the-shelf aldehydes, our 2-Hydroxy-1-Naphthaldehyde comes with manufacturer-backed certificates—for purity, melting point, and trace metal content—no afterthought, but integrated into our standard workflow. This attention translates into less rework and fewer supply chain headaches on the customer’s end. Samples pulled directly from our reactors undergo hands-on evaluation. Not all products on the market can say the same when they pass through multiple hands before landing on the customer’s loading dock.
There’s a reason chemists from specialty pigment producers to pharmaceutical innovators rely on this compound. The aldehyde group, activated by the phenolic ring, fuels a series of condensation and addition reactions—core skills in synthesizing novel ligands, chelating agents, and custom dyes. It’s not just about structure; it’s about how repeatable the reaction remains. As the original manufacturer, we see how variations in trace residues throw off a whole sequence of planned synthesis steps. Even trace levels of water can disrupt Grignard reagent additions and other sensitive transformations. Knowing this, we keep everything under strict anhydrous conditions before packaging. No one would want to gamble time or precious reagents on uncertain input.
At customers’ sites, we’ve seen it go into Schiff base synthesis, form lumen dyes, and work as a scaffold in biologically active compounds. The stability we build into every lot ensures repeatability, batch after batch, no matter the downstream complexity. University researchers often call us to ask how our aldehyde will behave in different reaction matrices—solvents, bases, acids. Because we know the process from scratch, we can give those insights, not just vague assurances. No trader or reseller has the same front-line view of its behavior in the reaction pot.
There’s a glut of 2-Hydroxy-1-Naphthaldehyde offered by traders who never see what comes out of a reactor. Inconsistent sources and repackaged materials often leave end users dealing with issues like powder caking, odd smells, or unexplained residues—signs of uncontrolled side reactions or storage. Because our warehouse staff knows the compound’s quirks from direct experience, every drum or jar ships optimized for shelf-life and handling. We recognize the faint, pleasant aroma of the pure aldehyde and know to spot the musty undertones of spoilage before they ever reach a customer.
Unlike mass distributors, we test stability for each batch before dispatch. It’s common for the market to float substandard lots—material that fails to meet melting point expectations, leading to depreciation during long-term storage or, worse, unpredictability in sensitive synthesis work. Because we produce at scale, we supply both research-grade and industrial-scale reactors—same backbone, but tailored packing and documentation. Chemists who have used our products for years—and switched to others out of convenience—often return after running headlong into unexpected failures or unreproducible results. The difference runs deeper than labels; it’s in the handling and commitment put into every single lot.
Over time, we’ve dealt with every concern: batch variability, moisture uptake, long-term storage, and compatibility with downstream reactions. Our technical teams trace each complaint or quality question directly back to the production step, not just to a faceless third-party vendor. We’ve worked closely with dye-makers to prevent aldehyde darkening during transport, supplying packaging with calibrated desiccant. Pharmaceutical customers have unique requirements. Some cannot risk even trace metal content due to possible downstream catalysis. By keeping our production under tight inert-atmosphere control and shipping in gas-tight vessels, we eliminate many such headaches before shipment.
Where others pass off quality claims as marketing, we've built a standing practice of sharing batch performance histories—reaction times, Yields, and purity outcomes—with trusted partners under confidentiality. In actual chemical research, even a small shift in melting point or the appearance of high-molecular side products can spell failure or costly troubleshooting. As the original manufacturer, we cut out all guesswork that comes from anonymous bulk trade. The same care that governs our own laboratory work extends to the customers’ bench, whether they need five kilos or half a metric ton.
The chemical sector never stands still. Every year, customers bring us new applications—metal complex synthesis, advanced organic electronic materials, medicinal chemical intermediates, or specialty ligands for rare earth extraction. Many of these rely on niche derivatives where even the faintest impurity can muddle structure-activity studies. Because we oversee synthesis from initial coupling to final packaging, we adapt quickly. For customers pioneering a new ligand for catalysis or needing an exacting polymorph for electronic use, we can fine-tune conditions without compromising core quality.
We’ve seen competitors produce for volume first, pushing marginal batches out the door to chase low price points. Often, this approach spawns headaches for end users—filter clogging, unexpected yellowing, low solubility, and irreproducibility. As a direct manufacturer, we take pride not just in the final product but in guiding downstream partners on storage, handling, and safe disposal. It’s common to field questions about impurities and reactivity with test acids and bases. We collect real-time feedback, compile it with our internal QA reports, and collaborate on custom adjustments—be that drying, micronization, or stabilizer addition—so that research and production lines run without surprise setbacks.
This isn’t a commodity for us. 2-Hydroxy-1-Naphthaldehyde forms a critical node in fine chemical design. As the main ligand-forming unit in many chelate studies, it allows precise tuning of metal affinity and reactivity, affecting everything from analytical sensors to catalysis. Years of collaboration with industrial partners revealed that batch-to-batch consistency—often overlooked in bulk chemical trade—makes all the difference in these applications. When formulation deadlines loom or patent filings depend on robust reproducibility, even slight inconsistencies undermine research confidence and product development speed.
Universities and industrial R&D alike use this compound to probe mechanism and build out custom analogues. The rules are exacting: the aldehyde must dissolve completely, react cleanly, and show minimal background response under standard analytical conditions. These attributes don’t arise by accident. At the manufacturing level, we chase every angle—flushing reactors with inert gas, calibrating temperature ramps, analyzing returns of color formation, and documenting every result. The lessons taken in one batch inform improvements in the next, forming an unbroken chain from raw chemical to finished product.
As direct producers, the responsibility for reliability doesn’t stop at shipping. We field questions about storage in humid climates, shelf stability, and ways to reduce cross-contamination risks in multipurpose labs. Over years of dialog with both large and small customers, we built packaging that cuts down on clumping and oxidation, using high-barrier materials and vacuum sealing. Such refinements rarely come from generic trading channels.
We maintain relationships directly with users. If a formulation experiment goes sideways, we don’t hide behind an anonymous support inbox. A chemist can contact us to discuss observations, down to faint discoloration during storage, solubility shifts, or odd behavior in their analytics. We can pinpoint possible contamination sources—be it atmospheric trace amines, light exposure, or crystallization “memory” carried over in reused glassware. This level of troubleshooting comes from first-hand knowledge no distributor or reseller can offer.
Responsible production shapes everything we do. Sourcing clean, high-quality raw materials and managing solvent recovery in-house allow us to keep environmental and safety impacts low. Our decision to recycle solvents and operate with closed-loop processes came from a blend of regulatory demands and the understanding that future chemists rely on today’s stewardship. The same attitude that demands perfect crystalline output pushes us to minimize process waste and reclaim any off-spec material safely.
End customers—particularly in pharmaceuticals and specialty dyes—place greater emphasis on sustainability and regulatory compliance. We provide open documentation, supporting environmental disclosures, and remain fully transparent on processing aids and byproducts. Over years of refining these practices, we’ve found that sustainable manufacturing aligns with consistent product reliability. Cleaner processes reduce contaminant risk from start to finish, allowing chemists and industrial users to trust the purity and character of every shipment.
Comparison with other market choices comes up regularly among buyers and R&D chemists. Some opt for low-cost lots that show outward compliance on documents, only to find unpredictable results—a foul odor, clumping, or inconsistent melting. We've seen stories of research projects delayed by unreliable intermediates sourced from unknown makers. In contrast, our in-house control means every unit gets thorough analysis—molecular purity, trace metals, residual moisture—checked on calibrated, regularly serviced equipment with accessible batch reports.
We know this compound’s quirks: how exposure to air changes its color, how even tiny traces of iron can catalyze unwanted oxidation, and how residual solvents change its solubility. Years of making this same product have shown us the subtle signs that predict high performance. When a customer calls us about a new synthetic route or a challenge in adapting a process, we don’t just read off a certificate—we reach into our own experience, from start-of-batch to shipping, to offer direct guidance. This perspective remains unmatched by traders who’ve never set foot in a reactor building.
Unlike indirect suppliers, our team follows the product from first reaction to final customer feedback. If a problem emerges—a reactivity issue, a packaging question, or a reluctance of the aldehyde to dissolve in certain organic solvents—we address it with data, and the authority that comes only from direct production. A distributor may sell a product, but seldom do they have the chemists on hand who actually refined and tested it. Whether reviewing analytical spectra or working out the best storage logistics, we support customers with concrete answers, not just marketing lines.
Several of our users have complex compliance checks and regulatory audits. Because our process remains fully traceable, with logs maintained at every step, we’ve never failed to provide back-up evidence when asked. Our lot histories are available for customer review at any time. This transparency and availability push us beyond standard anonymity in chemical distribution.
Chemical manufacturing requires constant adaptation. With ongoing shifts in demand and the emergence of new synthetic targets, we adjust our methods to keep up. Each batch teaches something new—how different feeds impact crystallization, how solvent systems change yield and purity, and how product transport conditions affect shelf-life. Our team meets daily to discuss variables, review incoming results, and adapt procedures as needed—always targeting consistency and steady improvement.
Input from research partners and industrial customers guides many improvements. We’ve changed drying conditions in response to customer feedback on powder flow, and modified our packaging based on hands-on lab reports of static build-up and clumping. Years of focus on direct manufacturing, rather than relabeling or trading, enable fast turnaround wherever adjustments are needed. The loop closes with feedback: what works, what needs rethinking, and how every new use-case informs production down the line.
What distinguishes our 2-Hydroxy-1-Naphthaldehyde isn’t just certificate data, nor is it mere adherence to a standard. It’s years of careful observation, repeated learning, attention to the end user’s working challenges, and the willingness to partner in solving real-world problems. Anyone can distribute a chemical, but only manufacturers with a direct hand in every single batch can back up product performance with insight and readiness to adapt.
Whether you design specialty ligands, refine pigment recipes, or test new pharmaceutical leads, the value of reliable inputs cannot be overstated. From careful packing to custom drying, batch-by-batch analysis, and a commitment to sharing know-how, our approach places long-term client and research success above transactional convenience. For us, 2-Hydroxy-1-Naphthaldehyde is never anonymous—it’s a result of skill, ongoing learning, and real accountability from the first day onward.