| HS Code | 704518 |
| Chemical Name | 2,3-Dimethylvaleraldehyde |
| Molecular Formula | C7H14O |
| Molecular Weight | 114.19 g/mol |
| Cas Number | 18999-53-0 |
| Iupac Name | 2,3-dimethylpentanal |
| Appearance | Colorless to pale yellow liquid |
| Boiling Point | 132-134°C |
| Melting Point | -64°C |
| Density | 0.798 g/cm³ |
| Refractive Index | 1.401 |
| Flash Point | 28°C (closed cup) |
| Solubility In Water | Slightly soluble |
| Odor | Pungent, aldehydic |
| Pubchem Cid | 13861705 |
| Smiles | CCC(C)C(C)C=O |
As an accredited 2,3-Dimethylvaleraldehyde factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle, 100 mL, sealed with a screw cap, labeled with chemical name, hazard symbols, and manufacturer information. |
| Shipping | 2,3-Dimethylvaleraldehyde should be shipped in tightly sealed, chemical-resistant containers under cool, well-ventilated conditions. Label all packaging clearly, and follow all regulatory guidelines for hazardous materials. Avoid exposure to direct sunlight, heat, and incompatible substances. Ensure compliance with local and international transport regulations for flammable liquids or hazardous chemicals. |
| Storage | 2,3-Dimethylvaleraldehyde should be stored in a tightly sealed container, kept in a cool, dry, and well-ventilated area away from heat, ignition sources, and direct sunlight. Store separately from oxidizers, acids, and bases. Protect from moisture and avoid prolonged exposure to air. Ensure proper labeling and keep away from incompatible substances to prevent chemical reactions or degradation. |
Competitive 2,3-Dimethylvaleraldehyde prices that fit your budget—flexible terms and customized quotes for every order.
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Over the decades in the chemical manufacturing space, our team has built a clear understanding of what our customers require from products like 2,3-Dimethylvaleraldehyde. Quite a few users approach aldehydes knowing they need purity, consistency, and a product that integrates smoothly into their own synthesis—whether that’s for pharmaceuticals, agricultural intermediates, flavors, or advanced materials. We produce 2,3-Dimethylvaleraldehyde following strict batch controls, using refined feedstock and a well-validated process, which leads to stable outcomes and reduces rework or unexpected byproducts in downstream operations.
Being a branched-chain aldehyde, 2,3-Dimethylvaleraldehyde carries distinct properties compared to the more commonly adopted straight-chain analogs. Its structure brings a lower volatility and a different reactivity profile, which many customers find suits their needs where standard valeraldehyde runs too quickly or unpredictably in condensation and addition reactions. Each lot undergoes comprehensive GC and NMR analysis, not because regulations say so, but because teams downstream depend on that assurance when fractions or trace impurities can impact the reliability of a new synthetic pathway or the performance of a fine chemical.
Only real-world control and experience refine our product ranges. For 2,3-Dimethylvaleraldehyde, our established model comes in at a minimum purity well above 98%, measured by gas chromatography. Water and acid content fall below stringent internal thresholds, ensuring compatibility with organometallic reagents or sensitive catalysts that are often employed in scale-up labs or exploratory pilot runs. The aldehyde is a colorless liquid under ambient conditions, with a faintly fruity odor that distinguishes it readily during incoming inspection or quality assurance. Our experience shows the narrow boiling range and low levels of side-products support smoother distillation and minimize fouling on glassware or reactor surfaces, attributes customers tell us make a clear difference during repeated production campaigns.
Customers in pharmaceutical R&D often seek 2,3-Dimethylvaleraldehyde as a building block for synthesizing branched amino acids, functional ligands, or for introducing unique structural motifs into drug candidates. Materials chemistry teams have taken advantage of its side-chain geometry, achieving results that cannot be replicated with n-valeraldehyde or isovaleraldehyde. In practice, chemists at mid-sized specialty firms have relayed how this product opens up access to otherwise hard-to-achieve intermediates in asymmetric synthesis or selective hydroformylation. The learning we take away from these reports feeds directly back into our process adjustments, whether optimizing solvent selection in final distillation or improving containerization to limit atmospheric exposure—a step often overlooked until a batch is unintentionally oxidized during storage.
We pack 2,3-Dimethylvaleraldehyde in steel drums, amber glass, or high-density polyethylene, depending on customer preference and order size. Our logistics team has encountered the full range of shipping environments over the years, which led us to invest in inert gas blanketing and tamper-proof seals on every container. Even seemingly minor optimizations, such as using a narrower drum liner or switching to custom palletization, prevented leaks and handling losses during seasonal temperature swings. The consistency in physical presentation matters in receiving departments; a product that pours easily and resists atmospheric oxidation keeps schedules moving and costs in line.
In comparison to lower-branched or straight-chain aldehydes, 2,3-Dimethylvaleraldehyde tends to evade the easy routes of acid-catalyzed polymerization. It provides a longer shelf-life under controlled storage, and we’ve tracked minimal self-condensation or dimer formation across multi-month holds, something many labs in humid, fluctuating climates appreciate. Where some manufacturers might chase the lowest price on raw material or scale output in less-controlled settings, we continue to prioritize narrow-temperature-reaction monitoring and careful solvent management to avoid unexpected changes in product profile. The feedback speaks for itself—fewer complaints about batch-to-batch variations, easier integration into GMP documentation, and less troubleshooting needed at the customer’s bench or reactor suite.
Our customer support extends to real conversations about use cases, not just error-checking certificates. When a formulator suspects lingering byproducts after a critical condensation, we review the chromatograms together and, if needed, examine bottlenecks in thermal cycling or reactor cleanout. Several flavor and fragrance houses have relied on our ability to adjust fill sizes and dispatch timelines, matching the variable demands in boutique production—a simple shift in scheduling for us, yet a big reduction in surplus or waste for our customers. Process engineers from both the agrochemical and coatings sectors have approached us with questions about interaction with organosilanes or nucleophilic partners, often leading to a deeper exchange of technical notes that benefits both sides.
Through hands-on manufacturing and monitoring of how each batch performs in real applications, clear differences surface between 2,3-Dimethylvaleraldehyde and better-known aldehydes like isovaleraldehyde, pivaldehyde, or the fully linear n-valeraldehyde. For instance, our own bench testing in aldol condensations revealed a noticeably sharper endpoint with 2,3-dimethylvaleraldehyde, which assists in color control for subsequent dye synthesis. Isovaleraldehyde gives a broader spectrum of side-products, driving up time spent on purification—something customers in chromatographic separations mention all too often. The higher steric hindrance brought by the two methyl groups on the chain makes 2,3-dimethylvaleraldehyde less susceptible to unwanted side-reactions, offering a more predictable yield and simplifying downstream isolation work.
In fragrance or flavor chemistry, 2,3-Dimethylvaleraldehyde lends a signature note not easily attainable from its isomers or homologues. One of our long-term partners in food science formulated a peptide modification with it, discovering stability and a depth in the aroma profile that broadened their ingredient catalog. Reports from quality assurance teams underscore that 2,3-dimethylvaleraldehyde’s volatility profile allows for improved retention in certain encapsulation processes, which directly links to shelf-life advantages in finished consumer products. It’s satisfying to see repeated, measurable gains in these practical applications—outcomes that justify the effort we put into refining each production run.
We have learned by listening to feedback from processors, chemists, and purchasing managers. Real experience revealed that seemingly minor impurities in our early years generated downstream challenges: filter fouling, phase separation in liquid blending, or even off-odors that upended fragrance tests. In close partnership with our users, we set up protocols for pre-shipment quality checks, immediate technical consultation should any anomaly appear, and customized packaging based on use environment. It’s an ongoing conversation—not a process that gets finished and filed away. Every season, we review analytical trends, tweak handling guidelines, and sometimes implement a process upgrade based on a single persistent customer question.
Raw materials handling, waste stream minimization, and closed-loop solvent recovery stand at the core of our environmental approach. Over the years, we reduced off-gassing and VOC emissions by adjusting distillation temperatures and investing in automated tank headspace monitoring. Several end-users voiced concern about aldehyde release; as a result, we shared best practices for receiving and venting protocols, and reduced line exposure during filling, which led to markedly lower atmospheric concentrations in both our own and customer facilities. These steps grew from day-to-day operational findings and direct discussions with plant technicians, not from pressure to comply with external audits. By pursuing a culture of shared responsibility, we help ensure safe integration of our products into each workflow, building confidence at every link of the chain.
Many procurement teams and lab managers return to our 2,3-Dimethylvaleraldehyde year after year, which gives us an ongoing pulse on industry needs and evolving market realities. Batch consistency moves from a promise to a lived reality, and open lines of communication lead to stronger project launches and fewer unforeseen surprises during scale-up. When regulatory changes or supply chain snags introduce new demands, we consult openly about adjustments, whether in documentation, material traceability, or shipping logistics, rather than forcing clients into pre-set order volumes or bureaucratic loops. As markets change and novel applications emerge, we share technical notes and trade insights—keeping each other prepared for what’s ahead.
Hearing results—good or bad—from daily practice guides continuous product refinement. One manufacturer of agricultural intermediates reported that their previous supplier’s aldehyde led to slow residue buildup in glassware, dampening throughput and raising washing costs; our current grades noticeably reduced deposit rates and kept their cleaning cycles on schedule. Diagnostic kit producers demanded lower impurity thresholds, which motivated us to set bench targets more stringent than industry baselines. Flavor and fragrance specialists describe a fuller, more nuanced aroma profile in their advanced formulations, attributing improved fixation to the customized inhibitor package we developed in response to their direct input.
Each collaborative project brings new insight, but it’s the sustained, incremental improvements—minimum odor drift, lower color values, reproducible reaction outcomes—that lead to widespread trust in our 2,3-Dimethylvaleraldehyde. Not everyone needs the same packing or the same analytical detail, so we match our flexibility to the requirements, rather than the other way around. This approach keeps us engaged with customers ranging from boutique research labs through high-volume industrial processors, always refining to fit the next application.
Standing at the intersection of chemical invention and manufacturing reliability, we know 2,3-Dimethylvaleraldehyde is more than a number on a COA. It shows in minimized waste during large-batch processes, improved product yields, or consistent aroma notes over an entire formulation cycle. These practical outcomes match technical capability with a deep sense of responsibility. By staying alert to operator feedback, process upsets, and direct results at the bench, we keep evolving both process and product, forming the foundation for long-term trust across every sector we supply.
Purchasing 2,3-Dimethylvaleraldehyde directly from a dedicated manufacturer brings more than fresh stock and on-time shipping—it means every issue, minor adjustment, or last-minute need can be traced back through a transparent, accountable supply chain. Our facility teams know not just the batch numbers but the real names and faces of the chemists, engineers, and procurement officers who depend on us. Every step, from order to delivery, rests on a common goal: making science and manufacturing work a little smoother, safer, and more predictable.
As research and new market demands shape the future, we’re committed to offering not only a reliable supply of 2,3-Dimethylvaleraldehyde, but also hands-on experience and honest dialogue. It’s this close relationship and practical knowledge that lets our clients bring their visions to life, without worrying about the small print or the fine details falling through the cracks.