|
HS Code |
591057 |
| Chemical Name | Methyl Jasmonate |
| Cas Number | 39924-52-2 |
| Molecular Formula | C13H20O3 |
| Molecular Weight | 224.30 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Odor | Jasmine-like, pleasant aroma |
| Solubility | Soluble in organic solvents (ethanol, methanol, acetone), slightly soluble in water |
| Boiling Point | 140-145°C at 1 mmHg |
| Density | 1.03 g/cm3 at 20°C |
| Purity | Typically ≥ 95% |
| Storage Conditions | Store at 2-8°C, protect from light and moisture |
| Synonyms | MeJA, Jasmonic acid methyl ester |
As an accredited Methyl Jasmonate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Methyl Jasmonate is packaged in a 100 mL amber glass bottle, sealed, with hazard labeling and a secure screw cap for safety. |
| Shipping | Methyl Jasmonate should be shipped in tightly sealed containers, protected from light and moisture. It must be classified and labeled according to relevant hazardous material regulations. Typically shipped at ambient temperature, transportation should ensure minimal risk of leakage or exposure. Follow all local and international guidelines for safe handling and shipping of chemicals. |
| Storage | Methyl Jasmonate should be stored in a tightly sealed container, away from light, heat, and moisture. Keep it at a cool temperature, ideally in a refrigerator (2-8°C). Store in a well-ventilated area, separate from strong oxidizing agents. Proper storage ensures its stability and prevents degradation or hazardous reactions. Always follow local regulations and safety guidelines when handling. |
Applications of Methyl Jasmonate in Industrial ManufacturingMethyl Jasmonate serves as a critical intermediate or functional additive in several specialized sectors, where its role directly impacts product quality and process efficiency. We leverage our expertise in strict process control and regulatory alignment to support industrial partners in achieving safe, compliant, and repeatable outcomes. The following application scenarios represent the primary downstream pathways for this raw material, together with details on regulatory frameworks, practical formulation data, integration points, and finished product categories. 1. Plant Growth Regulation Formulations for AgricultureMany commercial agricultural solution manufacturers utilize Methyl Jasmonate as an active ingredient in formulated biostimulant products designed to trigger defense mechanisms, improve quality traits in crops, and modulate flowering. This compound is selected specifically for high-value fruit, vegetable, and ornamental production, where precise induction of specific plant responses is critical. Its use must align closely with permissible active ingredient lists and crop-specific MRLs set by regional agricultural authorities. Industry compliance standards
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2. Fragrance and Flavor Intermediate for Fine ChemicalsThe fragrance sector incorporates this molecule primarily as a precursor in the synthesis of jasmonate notes for perfumery, where its jasmine-like aroma profile is highly valued. Its use also extends to flavor ingredients, especially in specialized blends requiring trace floral-lactone character. Downstream fine chemical plants require controlled reaction conditions to preserve olfactory quality, and compliance with food and cosmetic safety regulations is mandatory. Industry compliance standards
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3. Research-Grade Phytohormone Supply for Laboratory ReagentsSpecialty reagent manufacturers and biotechnology labs extensively order Methyl Jasmonate with high purity for plant physiology, transgenic, and signaling pathway research. This grade must meet or exceed laboratory chemical standards for phytohormones, ensuring reliable results in downstream DNA expression, metabolite analysis, and tissue culture studies. Industry compliance standards
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4. Postharvest Freshness Treatment SolutionsProcessing plants and packing houses for perishable fruits deploy Methyl Jasmonate as a technological aid to modulate postharvest respiration, delay senescence, and help maintain organoleptic quality. The integration process requires close monitoring of treatment exposure, residue levels, and regulatory compliance for direct or incidental food contact. Industry compliance standards
Typical usage ratio
Downstream process integration
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Ask any team working on the synthesis line about Methyl Jasmonate, and you’ll hear stories before you get technical talk. In our plant, the journey with this molecule has brought hands-on learning and a respect for both process and product. Our Methyl Jasmonate, long recognized under model number MJ-95, comes as a pale-yellow liquid, sharp and distinct from first whiff. That aroma signals a high-content product—purity upwards of 95%, a standard supported by gas chromatography on every lot leaving the building.
Getting to this level doesn’t mean scaling up some textbook recipe. There are shortcuts in chemical manufacturing that will cost you—impurities, batch inconsistency, complaints, or even safety concerns with unstable intermediates. We removed dozens of non-essential steps to cut risk. We know where the bottlenecks wait: temperature control during lactonization, slow hydrolysis, incomplete methylation. Fielding these year after year deepens skill, but nothing replaces repeated, hands-on practice. Methyl Jasmonate is manageable when you have direct knowledge of thermal swings, solvent handling, and the right grade of glassware to support industrial volume, not just laboratory vials.
Chemists like to chase after new molecules. Methyl Jasmonate’s been here, quietly doing real work. From the plant lab to field trials, and even in consumer goods, it stands apart from close analogues like jasmonic acid or synthetic blends that cut corners. Plants respond at the signal level when exposed to this compound; they initiate natural defense, encourage specific growth patterns, and trigger the very processes geneticists and agronomists seek to harness. We have supplied university research fields and pilot farms where these results matter—not theory, but changes in crop yield and disease resistance.
Demand spikes every year from different quarters: researchers exploring how plant hormones drive resilience, nurseries wanting to reduce pesticide load, and aromatics specialists extracting its fragrance for high-end product lines. Industries using floral and fruit notes in fragrances value the genuine article. Synthetic substitutes, no matter how closely formulated, never completely recapture the true scent profile or the stability over time that our lot-tested product provides.
Every batch starts with a truly fresh chemical backbone—no recycled feedstock. This gives a subtle but measurable impact on both purity and shelf life. Storage drums spend less than three weeks on-hand from synthesis line to shipping. We run headspace GC on each container, tracing every lot down to its production day. Our customers receive certificates of analysis with spectral fingerprints, not vague purity scores. Repeat partners visit our facility to watch their batch being made, right through the methylation step. These are the details that keep major buyers loyal and prevent hidden problems from cropping up down the supply chain.
Compare this to general jasmonates or off-standard jasmonic acid methyl esters offered by bulk traders. Details that seem minor at purchase turn critical in real use. Low-quality starting material might cut fragrance performance or make dosing unpredictable in greenhouse trials. Impurities not only affect odor clarity, but also change volatility and degradation profiles over time. High-performance plant-growth trials require active compounds with robust shelf stability. From our plant experience, those seeking sharper results should look hard at how well their supplier controls both upstream chemistry and batch validation.
Inside the factory, we see the same product heading to different doors. An order might go toward a university project testing induced resistance in wheat against powdery mildew. The next barrel supports fragrance blending for a global perfume house. Downstream partners include producers of natural pest repellents. This cross-industry demand comes from one thing: Methyl Jasmonate isn’t a one-trick chemical. Where synthetic plant-growth regulators target only certain crops or stressors, Methyl Jasmonate’s signaling properties work across a range of flowering plants, many fruits, and even in orchids or bonsai for careful growth modulation.
Experience through the years has taught us the limits of nearly every jasmonic acid derivative. Many promise broad-spectrum bioactivity but reveal drawbacks during real-world use. Some degrade quickly under sunlight or bind unpredictably with non-polar agricultural carriers. Methyl Jasmonate, by contrast, delivers consistent performance, even under variable conditions. Our quality control focuses on eliminating byproducts known to cloud solutions or foul filtration equipment. Chemically clean product extends spray shelf-life, reduces clogging in foliar application systems, and prevents unexpected interactions with pesticides or nutrients.
Manufacturing isn’t just about synthesizing what the textbook prescribes. There are practical challenges: controlling airborne losses in volatile compound handling, ensuring accurate transfer for large-batch methylation, and tuning distillation techniques for maximum purity. Teams in the plant started doing things differently after early lessons. Multiple layers of argon blanketing and active cooling control now trace every vessel touch point. Glass lining, repeatedly tested for leaching, outperforms standard steel in retaining product integrity. This not only maintains the chemical profile but also safeguards loading operators from vapor exposure, an overlooked but vital step for occupational safety.
Another persistent challenge is regulatory evolution. There’s always a new threshold level for trace solvents or newly-listed regulated intermediates. Instead of chasing each new global label, our lab team built live-track documentation—visible process flowcharts, daily QA logs, and instant reporting of any nonconformance. This proactive documentation has streamlined both shipment and audit clearance, helping customers with border transits for their trial or production batches. Partners rely on this openness, often borrowing our batch histories for their grant proposals or patent backup.
Listening to our customers’ feedback over years shaped our own priorities. Orchid cultivators want micro-precision in dosing, needing clarity on volumetric percentage, not just gross weight. Commercial nurseries face unpredictable weather and demand stable compound consistency, even when shifted from cool storage to open air. Researchers often require small-volume, high-purity lots with detailed spectral analysis. Contract manufacturers for perfumery care about liquid color and oxidation stability, two qualities basic traders often dismiss.
We learned by working alongside these buyers, sitting beside them during greenhouse trials, and comparing outcomes from our batches to competitors. Stronger root formation in field-grown lilies translates into fewer interventions during growth, less chemical use, and better yields. That success rides on predictable molecule presence and activity level. In smell-driven industries, anything less than full aromatic integrity puts the whole product line at risk—consumer rejection of single formulation drags down the rest.
Jasmonic acid or alternative methyl esters surface in the same conversations. Customers sometimes request blends based on cost, but we encourage comparison studies with real trial data. Jasmonic acid, lacking methylation, skips the volatility required for effective foliar penetration. In greenhouses, this means weaker signaling, slower onset, and increased application frequency. Some substitute esters possess higher initial pungency but degrade within weeks of storage, losing both aroma and biological effect. Methyl Jasmonate maintains its profile, both in scent and bioactivity, through typical field application cycles.
There’s a belief among some buyers that “close enough” counts for chemical identity. In practice, nuanced molecular differences ripple into practical results. For instance, the methylated form not only crosses membrane barriers more readily but shows less photo-degradation in sunlit plant beds. In fragrance design, the fine tonal composition of genuine Methyl Jasmonate outlasts that of synthetic copycats, persisting longer on finished goods. Those formulating unique blends or running high-performance research quickly see the superior holding and delivery power delivered by our pure batches.
From our seat on the manufacturing side, accountability builds trust. We invest in third-party lab audits and publicize anonymized purity testing from independent facilities, not just internal metrics. Onsite training with international partners isn’t a marketing flourish, it’s an invitation for direct inspection and feedback. Every plant operator is certified not just in process but in incident prevention, from accidental release control to exact calibration of dosing pumps. We welcome visitors not only to observe but to audit—often reviewing a decade’s worth of archived chain-of-custody records.
As regulations shift and new discovery paves more demanding applications, adaptability matters. We rebuilt part of the synthesis line last year to support eco-friendly solvent recovery, even at temporary cost to output. In return, waste profile dropped, water loads lightened, and we retained high compositional fidelity. Lessons from these efforts feed directly into customer confidence—and ultimately, into the resulting plant traits, fragrance lines, and product launches fueled by our compound.
Technical data tells only part of the story. Over the decades, our relationships with buyers and research partners gave us unique perspectives on application results, not just initial batch metrics. We host annual forums connecting growers, perfumers, and regulatory experts—offering direct reports on achieved outcomes: enhanced drought resistance in grapevines, higher fragrance retention in essential oil blends, or sharper pigment expression in flower crops. These real-world results formed the backbone for tweaks in our process, and shaped aspects like light-exclusion packaging and dosage calibration tools for our largest buyers.
Direct inquiry, ongoing field trials, and side-by-side product comparison make our Methyl Jasmonate not just a commodity, but a trusted foundation for breakthrough outcomes. Users feedback on application techniques, preferred carriers for field deployment, and strategies to boost absorption efficiency. Some see results in days, others across whole growing seasons, but the pattern stands—the product delivers, clean and predictable, every time.
Everything that passes out our door has undergone internal and, often, external verification stages. We’ve held to consistent purity levels for years because the alternative invites headaches all along the supply pipeline. Trace solvent retention and unchecked impurities can compromise both research findings and end product safety. Our in-line detection technology—integrated from start to finish—alerts operators at the earliest sign of deviation, preventing weak lots and raising confidence in every package bound for a greenhouse, research bench, or perfume laboratory shelf.
Worker safety at our plant matters. Proper handling of volatile organics forms part of daily culture: fitted respirators, air quality checks, and mandatory procedure sign-offs before any transfer operations. We’ve never had a lost-time incident involving MJ-95. Onsite emergency response teams conduct simulated spills for every production block, ready for the realities of daily chemical manufacturing.
We stand on the edge of product innovation. Upstream partners are researching new forms of dose-controlled Methyl Jasmonate delivery—nano-encapsulation, time-release films, and customizable micronutrient blends. Our factory teams play an active role in pilot projects that measure how Methyl Jasmonate performs against new plant pathogens, shifting climate stressors, and evolving consumer fragrance preferences. We invest alongside our buyers, supporting large-scale field studies and formulation tweaks that strengthen resilience and prolong fragrance in finished products.
Decades of hands-on experience count for more than short-lived price savings from bulk chemical traders. Our focus remains on batch-to-batch reliability, transparent process, and chemistry that stands up to real testing, not just thin data sheets. Methyl Jasmonate continues to unlock potential—for research, for agriculture, and for creative fragrance designers seeking character and depth impossible with synthetic alternatives. Manufacturing this molecule is not only about what leaves our plant; it’s about ensuring every end user achieves their best results, backed by expertise shaped through years of direct, real-world practice.