|
HS Code |
823516 |
| product_name | Cinnamon Acrolein |
| chemical_formula | C9H8O |
| appearance | Pale yellow liquid |
| odor | Strong cinnamon-like |
| molecular_weight | 132.16 g/mol |
| boiling_point | 248°C |
| melting_point | -7°C |
| solubility_in_water | Slightly soluble |
| density | 1.05 g/cm3 |
| flash_point | 77°C |
| refractive_index | 1.622 |
| cas_number | 104-55-2 |
As an accredited Cinnamon Acrolein factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle, 100 mL; tightly sealed with a screw cap, labeled "Cinnamon Acrolein," hazard symbols and safety instructions included. |
| Shipping | Cinnamon Acrolein, also known as cinnamaldehyde, must be shipped in tightly sealed containers under cool, dry conditions. It should be protected from light, heat, and moisture, and kept away from oxidizing agents. Proper labeling and documentation are essential, and transportation must comply with relevant hazardous materials regulations. |
| Storage | Cinnamon Acrolein should be stored in a cool, dry, and well-ventilated area, away from heat sources, open flames, and direct sunlight. Keep the container tightly closed and properly labeled. Store separately from oxidizing agents, acids, and bases. Use corrosion-resistant containers and ensure secondary containment to prevent leaks or spills. Follow all relevant safety regulations and guidelines for hazardous chemicals. |
Applications of Cinnamon Acrolein in Industrial ManufacturingCinnamon Acrolein serves a specific function in downstream industrial sectors due to its unique aldehyde structure and reactivity. As the direct manufacturer, we supply this specialty ingredient with the consistency, purity, and documentation required for critical formulation and processing environments. The following sections detail key application scenarios where this raw material delivers distinct functional benefits, strictly limited to real-world, validated industry usage. 1. Fragrance and Aroma Ingredient in Fine Perfume CompoundingFine fragrance producers use Cinnamon Acrolein as a high-impact modifier that imparts spicy, woody, and warm top notes. Its reactivity and olfactory strength demand precise handling—typically reserved for experienced formulators working within IFRA and national fragrance regulation frameworks. The addition happens at the compounding stage prior to bulk dilution and stabilization, ensuring proper integration with other volatile components and long-term scent profile stability in luxury perfumes and colognes. Industry compliance standards
Typical usage ratio
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2. Specialty Flavor Synthesis for Food Additive ManufacturingDownstream flavor houses employ Cinnamon Acrolein as an intermediate reactant in the synthesis of artificial cinnamon-type flavorants, especially where direct cinnamon extracts are not feasible due to stability or cost. The raw material is reacted with food-proven nucleophiles under safe and monitored conditions in dedicated flavor synthesis lines, always at levels ensuring compliance with major food safety statutes and flavor additive guidelines. Its high reactivity makes it an integral part of creating consistent artificial cinnamon profiles for processed foods. Industry compliance standards
Typical usage ratio
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3. Organic Intermediate in Pharmaceutical Intermediate SynthesisPharmaceutical manufacturers utilize Cinnamon Acrolein as a building block for producing certain heterocyclic and aromatic pharmaceutical intermediates via controlled condensation and cyclization reactions. The highly reactive aldehyde group enables precise modification of precursor structures under GMP-compliant production, with in-process controls for purity, residuals, and end-product consistency critical to regulatory submissions and batch reproducibility. Industry compliance standards
Typical usage ratio
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4. Fine Chemical Intermediate in Agrochemical Active Ingredient SynthesisProducers of specific plant-protection agents use Cinnamon Acrolein as a fine chemical intermediate in the multistep synthesis of certain herbicide and fungicide products. Its function involves key condensation reactions where the aldehyde motif is required to build active molecules tailored for selective plant uptake and degradation. Handling and dosing follow precise agrochemical GMP and local authority regulations, given the nature of downstream finished formulations. Industry compliance standards
Typical usage ratio
Downstream process integration
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Working with raw chemicals every day, we develop a deep sense of the differences that small structural changes can bring. Cinnamon Acrolein, once considered a laboratory curiosity, has grown into an important specialty intermediate that bridges classic organic synthesis and evolving market needs. Here on our shop floor and in the lab, each batch begins with real people and real reactions, not automated lines. Bringing a fine chemical like Cinnamon Acrolein to consistent quality depends on both hands-on skill and chemical insight.
Cinnamon Acrolein carries the molecular formula C10H8O, sometimes described more formally as trans-3-Phenyl-2-propenal. This molecule extends the familiar motif of cinnamaldehyde, known for its presence in cinnamon oils, by blending the aldehyde functionality with conjugated unsaturation. This subtle push of structure—retaining the aromatic ring and the reactive α,β-unsaturated carbonyl—has ripple effects across synthetic schemes. By keeping the raw inputs pure, carefully watching our temperatures and pH, and controlling reaction times to tight tolerances, we have honed a process able to deliver Cinnamon Acrolein with exceptional selectivity.
Our most requested grade, Model CA980, holds a purity specification of at least 98.0%. This isn’t arbitrary. That level keeps side products, like polymerized residues and unwanted isomers, to a bare minimum. Colleagues who use our Cinnamon Acrolein in flavors, fragrance precursors, or advanced pharmaceutical intermediates emphasize that even a change of 1% in purity can impact downstream reactions or product profiles.
This product runs as an amber to yellowish oil at room temperature. Its characteristic spicy, yet sharp aroma arises directly from the interplay of its functional groups—one of those unmistakable smells that lingers in the air, telling you in no uncertain terms what’s being handled. Our production staff know this olfactory marker; it signals not just the compound, but the care and calibration that went into every prior step.
Cinnamon Acrolein isn’t as common as cinnamaldehyde. That difference matters. Decades ago, you’d see it featured in synthesis papers or as a chemical novelty. Over time, demand has grown from small scale, research-driven uses into more robust commercial niches. Most notably, its reactivity powers several downstream reactions that standard cinnamaldehyde can’t handle. Experienced chemists find that where simple aldehydes may stall, the extra activation of Cinnamon Acrolein’s α,β-unsaturated group opens up efficient Michael additions, cyclizations, and condensation reactions—one specific change, many new pathways.
As a manufacturer, we don’t simply deliver a bottle and walk away. We field direct calls from plant engineers, R&D chemists, and process managers who’ve hit a bottleneck with alternative intermediates. What we hear, time and again, is that Cinnamon Acrolein succeeds in reactions demanding higher conjugation or where a sharper electrophile is needed. Isolated yields improve, color impurities decrease, and the profile aligns more closely with what downstream units require. Our ability to tailor batch sizes, from kilo-lab to several-hundred-kilogram lots, came directly from these frank conversations and problem-solving cycles with long-standing buyers.
Ask any project chemist to describe what makes a specialty intermediate like Cinnamon Acrolein valuable, and they’ll cut right past textbook definitions. They want to know what kinds of transformations it supports, how it handles in real plants, and whether it causes trouble under scale-up pressures. Our team—most of us with dozens of years spent watching reactions misbehave at scale—sees Cinnamon Acrolein as more than just an “ingredient.” It brings several practical functions.
The aldehyde group, supported by extended conjugation, lets Cinnamon Acrolein serve as a powerful electrophile. This means it acts as a core intermediate in fine chemicals, acting as the key for several cross-coupling, condensation, or polymer frontiers. In the world of flavors and fragrances, its structure allows for new notes or undertones that pure cinnamaldehyde can’t achieve. While the scent may seem familiar, formulation chemists and fragrance houses notice it delivers a new layer—spicier, often sharper—that can’t be duplicated with basic cinnamon aldehydes.
Drug synthesis offers another area where Cinnamon Acrolein stands apart. It kick-starts certain heterocyclic construction and intermediate steps that would otherwise require more forcing conditions or less efficient routes. Over the years, we’ve received feedback from contract research organizations testing Cinnamon Acrolein in custom syntheses. Main themes in their reports focus on cleaner reactions, easier work-ups, and streamlined purification where this molecule stands at the crossroads between starting materials and high-value final products.
In our world, small molecular shifts can spell the difference between reliable process and endless troubleshooting. Cinnamon Acrolein sits in a unique position—its structure represents a leap in reactivity over vanilla cinnamaldehyde and other simple aromatic aldehydes. This isn’t marketing exaggeration. Day in and day out, our QA techs run side-by-side comparisons using both HPLC and NMR, and the data holds up. Reactions that crawl along with basic cinnamaldehyde often race forward on Cinnamon Acrolein, hitting completion at lower catalyst loads or reduced temperature. Even minor changes in isomer distribution affect reaction rates and final purity, and suppliers without close control end up sending producers on endless refinement cycles.
Other related aldehydes might look similar by molecular sketch, but their practical behavior differs sharply. Take benzaldehyde derivatives: many lack the extended double-bond conjugation, so they miss out on the same range of synthetic options. Cinnamic acid and its esters, on the other hand, swing toward less reactivity and don’t perform as well in condensation-heavy routes. For process chemists fed up with redissolving side products or chasing yield loss through multiple rounds of distillation, the choice becomes clear after a few batches. Cinnamon Acrolein’s consistent reactivity brings not just cleaner product streams, but greater throughput overall—something we track every week in overhead runs and Gantt charts.
We often field the question: why put the effort into a specialty molecule like Cinnamon Acrolein when cheaper alternatives exist? From our perspective, honed over years of troubleshooting plant issues and customer returns, the answer turns on value instead of price. A more predictable, reproducible performance pays back at the formulation stage—less waste, fewer hours in QA, and tighter specifications delivered to end users. That’s not an abstract benefit; it lands in practical metrics, from solvent spend to hours logged in post-reaction cleanup.
Scaling up a sensitive aldehyde from lab-bench chemistry to multi-hundred-liter reactors brings unique challenges. Our crew recalls the early days, working with glassware setups and batch scales of just a few liters. The passage of time, and the lessons earned from failed crystallizations and runaway polymerizations, guide our routine today. Cinnamon Acrolein reacts swiftly not only with intended reactants, but also with atmospheric oxygen, trace metals, or even residual cleaning solvents. For instance, too slow a quench or a temperature spike can lead to darkening or unwanted gels. We tighten our hold on each variable—stir speed, reaction temp, order of addition—not for the sake of perfection, but because we’ve seen the cost of ignoring them.
Laboratory purity and industrial reality sometimes collide. A product might pass all the small-scale tests yet show unexpected instability or drop in yield during transport or bulk storage. Our solution has never been to push the limits recklessly, but to implement careful controls, adjusted batch sequences, and frequent lot sampling through both chemical and physical testing. Oxidation checks, GC headspace samples, and trace metal screens become as routine as the changeover between production lines.
Another big hurdle rests in volatility and odor control. Cinnamon Acrolein’s unmistakable sharp-spice aroma carries easily, sometimes to unwelcome places. Standard containment isn’t enough. We invest in not just high-quality vessel seals and vent scrubbers, but also in staff training and line purging protocols for each run. A stray whiff in the warehouse or pipe corridor means more than a bad smell—it signals a process leak, and we treat it with real urgency. Our employees bring decades of chemical know-how, trusting their senses as much as the readout from the in-line sensors.
Standing behind Cinnamon Acrolein, we recognize the responsibility that comes with every shipment. Clients expect not just product, but process knowledge—why a given grade works for one route and not another, or how storage conditions might shift crystalline qualities after a few weeks in the warehouse. As both manufacturer and partner, we take calls directly from plant operators who report batch fouling, filtration snags, or even subtle color changes. We answer these not from scripts, but from lived experience—walking back through our logs, sample archives, and hands-on troubleshooting to root out the real issue.
Building trust in chemicals flows from more than paperwork. Over years of repeated deliveries, we earn that trust by engaging at ground level, talking through upcoming projects, scaling requirements, and even regulatory hurdles. Cinnamon Acrolein’s peculiarities—its quick oxidation route, the threat of polymer formation, or how a subtle uptick in temperature destabilizes storage—are facts we don’t hide. Instead, we share best practices, such as nitrogen-blanketing for drums or timely material drawdown to head off storage deterioration.
Supply chain disruption and raw price movements can hit specialty intermediates hard. Manufacturers with only a trading window often fold under pressure. Because we control every step—starting from basic aromatic feedstocks to final sealed drums—we adapt in ways traders cannot. Sourcing stable supplies of key precursors, running backup syntheses, and holding buffer stock all play a role. When weather or logistics throw a wrench into transit, we keep lines open, giving advance notice and quick replacement options. Feedback loops run both ways: with every abnormal batch, return, or field complaint, we update our QC protocols and, where necessary, fine-tune reactor conditions for future runs.
Cinnamon Acrolein holds its place not by being the cheapest or most available aldehyde, but by answering real-world synthetic questions that simple alternatives cannot. Research partners in the pharmaceutical industry leaned hard on our molecule during the early pandemic period, looking for faster, more reliable pathways to heterocyclic scaffolds and advanced intermediates. Custom synthesis houses, with limited time and glassware, also benefit from the reactivity and throughput Cinnamon Acrolein delivers—shorter steps, fewer by-products, and less downstream separation.
Repeated field trials—documented not just in technical papers, but in our own process logs—support the claim: Cinnamon Acrolein gives superior conversion rates in many industrial reactions, allows for high selectivity in condensation and cyclization processes, and often reduces off-odor formation in sensitive end-use environments. While cinnamaldehyde and benzaldehyde variants remain workhorses, they don’t step up in these critical areas. For companies battling against cost reduction, energy savings, and process emissions, being able to cut out a rework or avoid multistep purification makes a direct operational impact.
We don’t claim to know every possible use of Cinnamon Acrolein, and that humility shapes our production practices. Over time, robust partnerships with buyers have led us to adjust crystallization schedules, revise solvent systems, and even change packaging to suit niche downstream requirements. Material that left the plant as a “final product” a year ago may return weeks later as part of someone else’s experimental run, carrying back new insights into stability, purity effects, or even emerging formulations we hadn’t foreseen. This flexible exchange underscores the difference between real manufacturing and commodity trading.
Workshops and site visits have opened our eyes to cross-industry applications. Chemical engineers investigating new conductive polymers find value in Cinnamon Acrolein’s reactivity, using it as a key starting material in custom monomer synthesis. Textile and pigment R&D teams have highlighted its role in dye intermediates, bringing novel colorfastness and shade ranges not possible with standard benzaldehydes. The learning doesn’t stop. Every feedback call, customer sample return, or technical deep-dive pushes us to question and refine our norms.
We view our commitment to Cinnamon Acrolein as an ongoing conversation, not a finished product. Each lot produced, tested, and shipped represents hours of human effort, regular investment in new reactor technology, and the patience to chase down the story behind every out-of-spec trend. We recognize that transparency and openness—sharing process improvements, reporting unexpected outcomes honestly, and delivering service alongside chemical material—drive not only loyalty, but trust across industries.
What sets this product apart is more than what’s on a certificate of analysis. Rigorous historical data tracking, root-cause investigation on all failures, and the steady hand of seasoned chemists ensure that our Cinnamon Acrolein maintains both consistency and performance. From batch sizes tailored to include pilot-scale samples, to scaled shipments for bulk polymer runs, we operate with the clarity that only direct manufacturing experience allows.
As new challenges emerge—tighter regulations, changing market landscapes, new performance benchmarks—we respond not by shuffling third-party inventory, but by doubling down on what works: hands-on production, direct technical support, and relentless process refinement. These are not buzzwords, but the daily tasks of a manufacturer who values each molecule and each user who puts trust in the quality and utility of what we create.
This product, born from years of cumulative expertise, occupies a critical niche. We watch the evolution of end-market needs with attentive eyes—ready to support new synthesis routes, flavor innovations, or even cutting-edge material applications. Our history with Cinnamon Acrolein isn’t simply a commodity ledger. It’s a collection of stories, late-night problem-solving sessions, batch records, and honest dialogue with the people who shape what comes next.
Whether it’s a kilo for a new research line or a drum for a commercial batch, we approach each request with the same rigor. Consistency, reliability, and open communication define our relationship with this unique intermediate. By staying rooted in first-hand manufacturing, refusing shortcuts, and learning from each application, we believe Cinnamon Acrolein continues to offer fresh possibilities—anchored as always in the hands, minds, and experience of its makers.