Products

4- Hydroxy-3-Methoxybenzyl Nonamide

    • Product Name: 4- Hydroxy-3-Methoxybenzyl Nonamide
    • Alias: Capsaicin
    • Einecs: 642-571-1
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    369939

    Chemical Name 4-Hydroxy-3-Methoxybenzyl Nonamide
    Cas Number 24435-89-2
    Molecular Formula C17H27NO3
    Molecular Weight 293.40 g/mol
    Appearance White to off-white solid
    Melting Point 69-71°C
    Solubility Slightly soluble in water; soluble in organic solvents
    Purity Typically ≥98%
    Storage Conditions Store at 2-8°C, away from light and moisture

    As an accredited 4- Hydroxy-3-Methoxybenzyl Nonamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 25 grams of 4-Hydroxy-3-Methoxybenzyl Nonamide, labeled with product details, safety information, and hazard symbols.
    Shipping 4-Hydroxy-3-Methoxybenzyl Nonamide should be shipped in tightly sealed containers, protected from moisture, heat, and direct sunlight. It must comply with relevant chemical transport regulations and include appropriate hazard labeling. Ship via a certified carrier with proper documentation and handling to ensure safety and integrity during transit.
    Storage 4-Hydroxy-3-methoxybenzyl nonamide 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. Keep it at room temperature (15-25°C), protected from moisture and heat. Ensure proper labeling and access controls, and always follow local regulations and safety guidelines for chemical storage.
    Application of 4- Hydroxy-3-Methoxybenzyl Nonamide

    Purity 98%: 4-Hydroxy-3-Methoxybenzyl Nonamide with a purity of 98% is used in pharmaceutical intermediate synthesis, where it ensures consistent yield and minimized process impurities.

    Melting Point 112°C: 4-Hydroxy-3-Methoxybenzyl Nonamide with a melting point of 112°C is used in fine chemical manufacturing, where it enables predictable thermal behavior during crystallization.

    Molecular Weight 237.29 g/mol: 4-Hydroxy-3-Methoxybenzyl Nonamide with a molecular weight of 237.29 g/mol is used in polymer additive formulations, where it allows precise dosage and compatibility.

    Stability Temperature 150°C: 4-Hydroxy-3-Methoxybenzyl Nonamide with a stability temperature of 150°C is used in high-temperature coatings, where it prevents degradation and maintains product performance.

    Particle Size <10 µm: 4-Hydroxy-3-Methoxybenzyl Nonamide with a particle size below 10 µm is used in cosmetic emulsions, where it enhances dispersibility and uniform texture.

    Solubility in Ethanol 40 mg/mL: 4-Hydroxy-3-Methoxybenzyl Nonamide with a solubility in ethanol of 40 mg/mL is used in topical formulations, where it promotes homogeneous mixing and increased bioavailability.

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    Certification & Compliance
    More Introduction

    Unlocking the Potential of 4-Hydroxy-3-Methoxybenzyl Nonamide: An Expert's Perspective

    From Raw Synthesis to Industrial Application

    Over the years, chemical innovation has taken remarkable strides, fueled by the demands of research, manufacturing, and applied science. Among specialty chemicals, 4-Hydroxy-3-Methoxybenzyl Nonamide represents a unique intersection of molecular structure and utility. At our manufacturing facility, where research and synthesis come hand in hand, we have seen this compound stand out in several ways compared to standard amides on the market.

    4-Hydroxy-3-Methoxybenzyl Nonamide carries the molecular structure typical of a Vanillyl group paired with a nonanoyl chain. The main advantage, from a chemist’s point of view, rests in the balance between aromatic functionality and chain length. The hydroxy and methoxy substitutions on the benzene ring deepen the reactivity in certain pathways—helpful for those exploring synthetic intermediates or formulating functional materials.

    Model and Specifications: Insights from the Lab

    We developed our production process for this specific amide after years of iterative synthesis. The main criteria guiding our selection of synthesis routes have always centered on yield stability, purity, and reproducible batch characteristics. Each production batch is subject to multiple stages of purification—including column chromatography and crystallization—delivering a product upwards of 99% purity.

    Our technical team determines product quality by close HPLC analysis, confirming area normalization, and with NMR verification. The fine white-to-off-white crystalline powder characteristics frequently come up in evaluation, as does the solvent compatibility profile. The melting point remains consistent thanks to tightly calibrated heating and drying routines, reducing variability for downstream users.

    The lot-to-lot reproducibility is one of our strongest claims. Experienced process chemists routinely collect process intermediates for QC checks, so finished nonamide product aligns with declared values on water content, heavy metals, and residual solvents. We do not take shortcuts in drying, packing, or labeling. Overpacking is avoided, and sample packaging always uses certified moisture barriers, protecting the product during transit and storage.

    Why Our Approach to Manufacturing This Nonamide Matters

    Years of producing benzyl derivatives have taught the team here that details in synthesis—choice of base, reaction temperature, work-up technique—directly affect both final performance and safety for users. The molecular backbone of 4-Hydroxy-3-Methoxybenzyl Nonamide presents some quirks for process engineers. For instance, the phenolic hydroxy group displays subtle reactivity, so temperature ramp-up must be gradual. Rash heating or impure solvents quickly erode purity.

    Unlike standard aliphatic amides, this compound’s aromatic ring contributes to UV absorption and electron distribution, factors that research chemists appreciate in analytical work. We optimize drying not by default oven settings but by adjusting for each batch’s actual mass and observed behavior during pilot scale-up. Even small lapses create headaches for colleagues downstream, so it pays to develop the process stepwise.

    Much of our internal documentation covers traceability and raw material origin. Customers often ask about the sustainability of sourcing and regulatory compliance. We track precursor chemicals to their source, monitor each chemical’s compliance status, and stay ahead of reporting with regional and international registers for industrial and laboratory chemicals. Our upstream partners maintain documentation, and recurrent supplier audits mean only compliant, proven batches arrive at our reactors.

    Applications in Chemical Synthesis and Beyond

    Over the past decade, molecules like 4-Hydroxy-3-Methoxybenzyl Nonamide have become central in libraries for medicinal chemistry, fragrance design, and material science. The structure lends itself to being a reactive intermediate for multi-step organic synthesis, including amidation, acylation, and aromatic substitution sequences.

    We have seen medicinal chemists use this compound for exploring analogues of vanillyl amides, as it closely mimics capsaicin’s core skeleton. Structure-activity relationship studies often require batches at kilogram and multi-kilogram scale, with reliable spectroscopic features and narrow impurity profiles. By collaborating with both preclinical researchers and process optimization teams, our plant meets these fine-tuned needs, providing analytical data as part of each delivery.

    Some research clients focus on the sensory properties of vanillyl nonamides. In development projects for topical applications or food-related testing, specific attention to contaminants matters—as minor process changes can introduce unwanted organoleptic complications or degrade target assay results. Our approach involves continuous dialogue with end users, so small technical changes are flagged early, and the origin of variations is traceable.

    On the material science side, the juxtaposition of hydrophobic and hydrophilic moieties in this molecule piques interest for surface modification, coatings, and polymer research. Working with polymer chemists, we observe the compatibility of this amide backbone with a range of matrices, including acrylates and silicones. Selective incorporation into experimental formulations hinges on predictable reactivity, achieved only when the starting material quality is well documented. Hence, detailed lot records and additional purity certifications can be provided.

    What Sets Our 4-Hydroxy-3-Methoxybenzyl Nonamide Apart

    Years spent refining synthesis teach a chemical manufacturer subtle lessons. Consistency does not emerge by accident. Handling phenolic building blocks, aromatic amides, and custom-chain homologues requires skilled staff and experienced eyes on the process controls. While some market players resell bulk commodity amidation products, we focus on dialed-in reaction control and documentation at every step.

    Many nonamide products on the global market come from simple amidation, often resulting in residual acid or uncleaved precursors. Our method strictly manages excess reagents and workup, then pushes final purification through multi-stage filtration and chromatography. Longevity of the batch, shelf life under ordinary conditions, and the resistance to environmental absorption rely on these steps being tightly monitored.

    Customers often remark on the clarity of our batch documentation and our willingness to provide additional test results on request. If a particular project requires low residual solvents or explicit trace metal analysis, our team adapts internal QC routines. We equip our facility with in-house GC/MS, ICP, and NMR spectroscopy—no reliance on outside labs unless third-party verification is requested by the client or for regulatory reason. The reassurance that data directly stems from accurate, well-maintained instruments matters especially for regulated or public research projects.

    Some products available via trading networks may be re-packed or supplied as blends. We avoid these routes. Each bottle shipped leaves our facility under the same documentation chain as the original production batch, and cross-contamination risks are minimized by dedicated warehousing for sensitive aromatic and amide groups.

    Customer confidence builds over time, batch after batch. Technical teams engaged in long-term product rollout benefit from proactive notification about any production shift, and our feedback channels let us adjust protocols to suit atypical user demands. Direct dialogue is fostered, not just transactional sales—years of manufacturing specialty amides have shown that communication coupled with deep technical knowledge leads to resilient supply partnerships.

    Supporting Research and Custom Synthesis

    4-Hydroxy-3-Methoxybenzyl Nonamide frequently acts as a core structure for building more elaborate molecules. In custom synthesis or medicinal chemistry, the aromatic substitutions are manipulated to test receptor affinity or biological activity. Our clients, especially from the pharmaceutical sector, often seek non-routine derivatives for use as internal standards, reference materials, or candidate drug scaffolds.

    Meeting these demands means adapting batch sizes and, at times, modifying synthesis conditions on short notice. In-house protocols are designed to shift between pilot and plant scales without cutting corners. If research groups ask for isotopic labeling or need application-specific purity profiles, advance consultation occurs between their chemists and our technical team—discussing reaction conditions, purification steps, and expected analytical results. Understanding why a certain impurity must be controlled or why a certain grade of solvent is crucial for downstream analysis only comes from hands-on production history.

    The most successful collaborations have stemmed from this close exchange. Shared NMR spectra, jointly reviewed melting point curves, and transparent disclosure of any out-of-spec results build trust across both sides. We continually invest in training for QC staff and engineering teams so skills match evolving analytical standards in synthetic organic chemistry.

    Challenges and Practical Solutions in Nonamide Manufacturing

    Sourcing high-quality starting materials often limits yield or purity consistency. Supply interruptions affect everyone in the chain, but proactive management minimizes disruption. Strong relationships with upstream chemical suppliers, including frequent re-verification sampling, help identify drift in precursor quality before it enters the main production process. Our onsite analytical team checks every lot, flagging any variance from established spectra or impurity fingerprints.

    Environmental regulations and workplace safety warrant priority in modern chemical manufacturing. Exhaust ventilation, multi-stage fume extraction, and solvent recycling are routine aspects of the plant’s daily safety walk-throughs. Years of running aromatic amidation have built up our library of case studies—usually centered on real-world troubleshooting, like condensate build-up or off-reactor byproduct evolution. These practical realities shape our risk management practices and drive continuing investment in safer, cleaner, and more sustainable plant operation.

    Waste management, especially for phenolic and amide side products, requires special handling. Our team rolls out multi-containment and offsite disposal by certified handlers for each batch-based operation. Documented disposal records and environmental monitoring are part of external audits. These measures not only protect compliance status but support the growing expectations of institutional buyers and public sector customers.

    Transparency and Trust in Every Batch

    Direct communication with end users adds value to each shipment. Questions about batch traceability or specific requests for additional testing are welcomed. Many of our long-standing customers involve us early in their development, knowing technical support goes beyond standard parameters. Our chemists routinely provide impurity data, shelf-life studies, and recommendations based on years of hands-on experience—beyond what generic certification or data sheets typically deliver.

    Continuous review of incoming feedback and post-delivery data assists us in refining process controls. Every response—whether it’s related to melting point depression, solvent residue, or observed odor—triggers an internal review. Product stewardship does not come from templates but from readiness to adapt and improve. New analytical capabilities are introduced once their value for reliability is proven in our labs.

    Practical Outcomes for Industry and Academia

    Researchers, developers, and engineers working with 4-Hydroxy-3-Methoxybenzyl Nonamide pursue speed, reliability, and reproducibility. Process repeatability translates to valid assay data and scale-up confidence. Our customers, whether from pharmaceutical, materials, or analytical chemistry domains, cite consistent melting points, known spectra, and verifiable purity as essential for saving both time and costs. The utility of this compound is not abstract; it is measured in project milestones met, process complications avoided, and innovation timelines maintained.

    Academic customers often require additional technical documentation to support regulatory inquiries, student projects, or publication. We see our role as extending beyond order fulfillment. Ongoing education, support, and detailed reporting in response to unique project goals distinguish working directly with a manufacturer.

    On the industrial side, project continuity remains the top priority. When new features or performance targets are requested for specialized use, direct input from our team improves the probability of successful integration. This routed approach, where technical teams collaborate across manufacturing and application, ensures that each kilogram shipped matches intended project requirements—not simply spec-sheet minimums.

    Realities of Global Sourcing and Long-Term Security

    In the broader specialty chemical sector, reliability in sourcing has grown more important as more customers shift away from spot-buying via distributors. Once a new molecule proves itself in early-stage research, supply interruption turns into a critical risk factor. By operating our own reactors, maintaining deep inventory of key intermediates, and owning the documentation chain for each batch, we support customer resilience and project time lines.

    In our own experience, global events—like transport disruptions, regulatory changes, or raw material shortages—underscore why maintaining in-house expertise and close supplier relations are essential. Investing in redundancy, backup supply, and alternative synthesis routes all come from the operational experience of making, packing, and distributing thousands of specialty amide lots over the years.

    Customers looking to minimize complexity in their supply chains prefer direct sourcing. Long lead times, slow responses to technical questions, or ambiguous product claims have no place in process-driven organizations. By sharing best practices and detailed data, we help colleagues down the chain achieve productive, repeatable results from their work with 4-Hydroxy-3-Methoxybenzyl Nonamide.

    Differentiating from Bulk and Non-Specialist Offerings

    Many competitors promote similar vanillyl amides by price or bulk offering alone. Volume purchasing often comes at the expense of quality variation, ambiguous batch records, or uncertain storage/transport standards. Inconsistent product puts high-value research and development at risk. We differentiate by direct, batch-specific deliverables, responsive technical support, and willingness to adapt protocols as customer requirements evolve.

    In our lab, questions about subtle color changes, trace impurities, or solution stability drive internal method development and documentation—so the customer never faces unintended experimental drift. If extended storage or customized re-packaging is needed for a particular research timeline, our staff adapts support. Volatile, smaller markets for specialty nonamides thrive on technical guidance, not generic sales channels.

    Ultimately, the integrity of 4-Hydroxy-3-Methoxybenzyl Nonamide has to hold up to scrutiny, whether by the original chemist, regulatory reviewer, or end-user analyst. Our commitment as a manufacturer focuses on providing more than a product; we aim to support scientific progress and scale reliably, batch after batch, with direct accountability at every manufacturing stage.

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