|
HS Code |
898450 |
| Chemicalname | 2-Hydroxyhexanedial |
| Molecularformula | C6H10O3 |
| Molarmass | 130.14 g/mol |
| Casnumber | 6296-97-9 |
| Appearance | Colorless to pale yellow liquid |
| Density | 1.13 g/cm3 (approximate) |
| Solubilityinwater | Miscible |
| Structure | HOCH(CH2)3CHO |
| Smiles | OCCCCC=O |
| Flashpoint | Estimated >100°C |
| Refractiveindex | 1.444 (estimated) |
| Odor | Mild, characteristic |
As an accredited 2-Hydroxyhexanedial factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 2-Hydroxyhexanedial is packaged in a 100g amber glass bottle with a secure screw cap, labeled with safety and handling instructions. |
| Shipping | 2-Hydroxyhexanedial is shipped in tightly sealed containers, protected from moisture and light. Packages are clearly labeled and handled as a chemical reagent, following relevant safety and regulatory guidelines. During transit, it is stored in cool, dry conditions, ensuring secure handling to prevent leaks, spills, or exposure to incompatible substances. |
| Storage | 2-Hydroxyhexanedial should be stored in a tightly closed container in a cool, dry, and well-ventilated area away from sources of ignition and incompatible substances such as strong oxidizers. Avoid exposure to moisture and direct sunlight. The storage area should be clearly labeled, and access should be restricted to trained personnel. Proper personal protective equipment should be available when handling this chemical. |
Applications of 2-Hydroxyhexanedial in Industrial ManufacturingAs a dedicated manufacturer, we supply 2-Hydroxyhexanedial of high consistency for critical roles in several specialized industrial value chains. Below, we highlight verified application scenarios based on established production usage, regulatory frameworks, and downstream process integration, offering direct, actionable guidance for formulation and compliance in your sector. 1. Preservatives and Antimicrobial Agents in Household and Industrial Cleaners2-Hydroxyhexanedial serves as an efficient glycol-based preservative, controlling microbial growth in multi-phase formulations for liquid detergents, disinfectant concentrates, and surface care solutions. It targets contamination risks in aqueous systems exposed to repeated handling, extending shelf life and supporting clean-label claims in compliance-controlled markets. Downstream producers value its minimal interaction with surfactant systems and compatibility with a wide spectrum of anionic and nonionic bases, which is critical during mass blending at concentrated scale. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Chemical Intermediate for Cosmetic PreservativesIn cosmetics manufacturing, producers use 2-Hydroxyhexanedial as a critical building block to synthesize dialdehyde-based antimicrobial agents. It fits into modern portfolios seeking preservation with lower formaldehyde release and gentler skin profiles. Its linear structure ensures stable conversion and predictable residual profiles, supporting smooth transition into the downstream enzymatic or acid-catalyzed synthesis steps for globally approved cosmetic actives. This route directly feeds into ingredient supply chains for personal care and beauty manufacturers seeking to support paraben-free and MIT-free claims. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Crosslinking Agent in Waterborne Polymer EmulsionsMajor manufacturers of waterborne resins, adhesives, and latex employ 2-Hydroxyhexanedial as a bifunctional crosslinker to engineer a balance of hardness, chemical resistance, and flexibility in end-use films and binders. The dialdehyde moiety achieves targeted chemical bridging with hydroxyl, amine, or carboxyl functionalities of acrylic and polyurethane backbones. Producers pursue this approach where formaldehyde-free crosslinking is legally mandated or where lower migration risk in coated articles is essential, especially for packaging and construction sectors. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Textile and Leather Finishing Agents2-Hydroxyhexanedial finds targeted use in textile and leather mills, providing stable crosslinking action for wrinkle-resist and anti-crease finishing. Its controlled dialdehyde activity ensures low yellowing and softening even after repeated washing. Manufacturers leverage its water solubility to engineer durable press finishes for cotton, synthetic fiber blends, and genuine leather under continuous padding, drying, and curing lines. This application remains tightly aligned with drive towards greener chemistries and formaldehyde-free labels for fast-moving consumer goods. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
5. High-Performance Resin Synthesis for Electronics EncapsulationSpecialty resin manufacturers incorporate 2-Hydroxyhexanedial as an essential chain extender and aldehyde-functional crosslinker in low-volatility, electrically insulating resin systems. This approach enhances hydrolysis resistance and thermal cycling stability in encapsulants and potting compounds for electronic module protection. Its precise reactivity profile supports controlled backbone extension and end-capping during resin synthesis, minimizing ionic contamination—a critical property for high-reliability device manufacturers demanding UL or IEC qualified formulations. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
|
Competitive 2-Hydroxyhexanedial prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.
We will respond to you as soon as possible.
Tel: +8615371019725
Email: admin@sinochem-nanjing.com
Flexible payment, competitive price, premium service - Inquire now!
Every batch of 2-Hydroxyhexanedial that leaves our facility reflects years of dedication to process development and chemical consistency. As a direct manufacturer, we commit to more than just churning out product. We control each step, starting from raw material vetting to strict monitoring of reactions, guaranteeing clear traceability and reliable results for our partners. We know exactly what goes into our chemistry, and that depth of involvement gives customers confidence—real confidence, not just another marketing slogan.
Over the years, chemists and process engineers in our plant have experienced the critical role that minor changes in temperature and pressure play in forming 2-Hydroxyhexanedial. It is not just another small diol; it demands a keen eye on purification. Modern chromatography and advanced GC-MS analysis back up our aim for purity above 99%, rather than the minimum thresholds that sometimes pass for acceptable in wholesale channels. By investing in these technologies, we minimize batch-to-batch variability and give users tighter performance windows—and fewer surprises during downstream formulations.
Colleagues in research and production often ask what drives the steady demand for 2-Hydroxyhexanedial. From our vantage point, this compound regularly walks off the loading dock for highly specialized functions. In organic synthesis, its bifunctional nature brings it to life as a versatile intermediate for pharmaceuticals and materials science. Chemists trust this dialdehyde because it offers room for further derivatization. For instance, polymer manufacturers look for our product when they need monomers that deliver not only reactivity but also handle certain processing temperatures and solvent systems. In these applications, impurities or even modest deviations in melting point can cause a noticeable impact on yields and the physical characteristics of end-use materials.
We see a widening scope in cosmetic and personal care development as well. Formulators exploring new antimicrobial and cross-linking solutions come to us for a supply chain that does not cut corners or blend off-spec material. Their formulations rely on dialdehyde purity to ensure final cosmetic safety and compliance with both regulatory authorities and internal quality expectations.
Some customers in the fine chemicals world reach for 2-Hydroxyhexanedial during synthetic route optimization when other dialdehydes fail to strike the right balance between reactivity and selectivity. We have often heard from R&D teams that reliable supply and clear characterization data—NMR, FTIR, HPLC—distinguish manufacturer-backed product from that of resellers where labelling may not match reality.
On paper, 2-Hydroxyhexanedial may seem indistinguishable from competing products, but experience shows real differences arise in the details. We uphold a tight range for melting and boiling points, not just as a point of pride but because it keeps your processes running smoothly. It’s rare to see large lots without some outliers, especially if you only act as an intermediary between multiple upstream suppliers. We heard from one polymer developer who noticed color issues and a shift in viscosity with off-grade material from a gray-market supplier; switching to a direct batch from our lab eliminated those headaches in their extrusion process.
Careful handling matters, too. Dialdehydes tend to undergo self-condensation or degrade under improper storage or transport conditions, sometimes even before reaching the customer. We rely on specialty packaging—high-barrier drums or nitrogen-flushed containers—for any product intended for sensitive organic syntheses. These practices come straight from years of feedback and real trial and error. Shortcuts can lead to costly product loss or failed formulations, and our quality control traces back issues instead of merely offering excuses or passing the blame up the chain.
End users benefit most from upfront disclosure and clear user guidance. We do not just sell 2-Hydroxyhexanedial—we bring practical, field-tested advice to every transaction. Seasoned formulators often contact us for insight into ideal dissolution practices in water or alcohols, as improper technique can cause spotty results or localized gelation. We work alongside technical staff to optimize addition protocols—stirring times, vessel selection, and even filtration tips—all of which can make or break an otherwise promising development project.
Our support team includes chemical engineers who have worked the same pilot plants and full-scale reactors that end users operate. That hands-on experience means we can interpret questions from those troubleshooting a batch, not just field inquiries through a sales portal. If a customer calls with a product color shift, we do not just quote the last certificate of analysis; we investigate root causes and draw on years of spectral archives and process logs.
Consistency in attributes like odor, crystal habit, and even dust propensity make a critical difference in settings where environmental controls, filtration, or worker comfort come into play. 2-Hydroxyhexanedial has a distinct sharpness detectable in pure form; our controlled evaporation and vacuum drying methods limit residual side products, supporting occupational safety and minimal product loss.
Within the dialdehyde family, structural changes mean the world to chemists and engineers. 2-Hydroxyhexanedial features a backbone that separates it from short-chain analogues and high-molecular weight dials. This six-carbon scaffold, with its mid-chain hydroxy group, leads to particular reactivity that supports unique cross-linking reactions and mild oxidative processes in specialty synthesis.
Those benefits translate to flexibility in modifying polymer substrates and tailoring reactivity for adduct formation—capabilities not possible with simpler, smaller dialdehydes like glyoxal or glutaraldehyde. We encounter teams using glutaraldehyde for crosslinking but hitting limits with solubility or reactivity profiles; a switch to 2-Hydroxyhexanedial introduces functional latitude without adding excessive regulatory burdens, opening up new IP claims and patent filings.
Another feature that has made this molecule a staple in our catalog stems from its manageable toxicity profile. Unlike some short-chain dialdehydes, 2-Hydroxyhexanedial shows a lower tendency for acute toxicity in typical industrial applications. Adherence to standard PPE and containment measures satisfies most workplace safety officers—something we have confirmed through collaborative toxicity studies and decades of occupational monitoring records. Workers appreciate fewer headaches and less irritation during handling; safety teams appreciate traceable handling protocols and consistent product composition.
From personal experience, product scale-up depends heavily on these routine but often overlooked differences in physical behavior. The way this dialdehyde crystallizes, flows, and interacts under shear at variable temperatures supports practicable, large-scale production in reactors and continuous lines. We have faced plenty of days redesigning hoppers or drying units for third-party products, only to return to our carefully characterized batches for smooth, clog-free operation. It’s in those daily realities, not theoretical specifications, where our approach earns customer loyalty.
As an established manufacturer, our responsibility extends beyond shipment and immediate customer needs. We keep records stretching back years; this archive allows us to keep an eye on trends, anticipate changes in raw material supply chains, or catch shifts in customer requirements. These practices allow us to deliver consistent 2-Hydroxyhexanedial, not just in specification but in all the subtle qualities that labs, pilot plants, and full-scale operations depend on.
We continually engage in conversations with academic research groups and industrial partners. These discussions not only guide our QC program but push us to take on custom purifications or scale adjustments for new applications. We respect confidentiality and eschew blanket solutions, preferring to share our practical know-how—including pitfalls encountered and improvements pioneered on our floor.
Our QC and technical groups conduct real scenario-based troubleshooting, not just literature reviews. For instance, an uptick in melt viscosity in one batch caused us to overhaul our fractional distillation steps. This kind of adaptation is a hallmark of direct manufacturing: it empowers rapid, informed reaction to unexpected developments. Our support staff see themselves as collaborators, not just compliance monitors or salespeople.
We never underestimate the value of working shoulder to shoulder with users. Technical service means sharing details—solvent compatibility, mixing order, or temperature ramp suggestions—so customers avoid unnecessary waste or time delays. Our team frequently reviews customer process notes alongside our own lab data to optimize outcomes together. Through these joint efforts, both sides learn and innovate, with documented improvements cycling back into future product batches.
Over the years, we noticed that end users often struggle with trace impurities introduced by blending or repackaging at secondary facilities. We do direct everything: packaging, labeling, and logistics come straight from our site, stripping out that extra risk. Our traceability leads to faster troubleshooting and more transparent documentation during regulatory inspections or audits.
With 2-Hydroxyhexanedial, routine feedback spurs us toward closing gaps between theory and field performance. We appreciate when a research group flags an unusual thermal behavior, just as much as when a customer production manager points to a missed delivery timing. Recognition of these details forms the backbone of our continuous improvement and fosters a robust internal training culture.
Making 2-Hydroxyhexanedial is not about moving a commodity; it’s about stewarding relationships and taking a hands-on approach to the entire product lifecycle. We view our direct connection to chemistry, people, and performance as non-negotiable. Each metric—purity, crystallinity, consistency—matters daily in the trenches, not just on paper. Through time-tested process control, honest customer dialogue, and relentless pursuit of better standards, we remain a trusted source for this critical molecule. Our doors remain open for discussion, problem-solving, and the next wave of challenges in advanced manufacturing and formulation.