|
HS Code |
743403 |
| CAS_number | 27113-22-0 |
| IUPAC_name | 1-(4-hydroxy-3-methoxyphenyl)decan-3-one |
| Molecular_formula | C17H26O3 |
| Molecular_weight | 278.39 g/mol |
| Appearance | Colorless to pale yellow oil |
| Solubility | Insoluble in water, soluble in organic solvents |
| Natural_source | Found in ginger and grains of paradise (Aframomum melegueta) |
| Taste | Pungent, hot-spicy flavor |
| Odor | Characteristic spicy odor |
| Uses | Flavoring agent, potential antioxidant, studied for health benefits |
| Synonyms | Paradone, 6-paradol |
As an accredited 6-Paradol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 6-Paradol is packaged in a 10g amber glass bottle, featuring a secure screw cap and a white chemical hazard label. |
| Shipping | 6-Paradol is shipped in tightly sealed, chemical-resistant containers to ensure stability and prevent contamination. Packages are labeled according to regulatory guidelines and shipped via certified carriers, adhering to all safety regulations. Temperature and handling instructions are provided, and all relevant safety data accompanies each shipment to ensure proper and secure delivery. |
| Storage | 6-Paradol should be stored in a tightly sealed container, protected from light and moisture, in a cool, dry, and well-ventilated area. Keep it away from sources of ignition, strong oxidizing agents, and incompatible substances. Store at room temperature or as specified by the manufacturer, and ensure the storage area is appropriately labeled to prevent unauthorized access or accidental misuse. |
| Purity 98%: 6-Paradol with purity 98% is used in pharmaceutical formulations, where enhanced bioactivity and consistent therapeutic effects are achieved. Melting point 31°C: 6-Paradol with a melting point of 31°C is used in topical analgesic creams, where rapid dermal absorption and improved patient compliance are observed. Particle size 10 microns: 6-Paradol with particle size 10 microns is used in nutraceutical powders, where increased dispersion and uniform dose delivery are ensured. Stability temperature 40°C: 6-Paradol stable at 40°C is used in functional food products, where maintained efficacy throughout shelf life is guaranteed. Oil solubility: 6-Paradol with high oil solubility is used in cosmetic serums, where superior ingredient integration and enhanced skin penetration are facilitated. Molecular weight 278.39 g/mol: 6-Paradol with molecular weight 278.39 g/mol is used in metabolic research assays, where reliable compound identification and quantification are achieved. |
Competitive 6-Paradol prices that fit your budget—flexible terms and customized quotes for every order.
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6-Paradol, a phenolic compound also known as 1-(4-hydroxy-3-methoxyphenyl)decan-3-one, grew from years of steady refinement in our plant. We’ve brought its production through each stage ourselves, fine-tuning everything from raw material sourcing to the final purification steps. Our team supports research labs and personal care brands alike because we recognize quality and authenticity mean more than slick marketing or quick distribution. Each gram reflects consistent hands-on process—real people in the lab, real oversight, and real accountability.
We consistently hear from cosmetics formulators who appreciate transparent sourcing and direct answers. The growing demand for natural and nature-identical actives puts pressure on chemical manufacturers, and plenty of companies promote ingredients they never even touch. With us, 6-Paradol never passes through lengthy supply chains of traders and resellers; it comes straight from our reactors and our quality team’s sign-off.
Our 6-Paradol features a fine white to pale crystalline powder, generally stable under standard storage conditions. Melting point typically falls in the upper 30s Celsius. Purity, confirmed by HPLC, always meets the threshold at or above 98%.
The molecular formula, C17H26O3, gives the backbone for the distinct alkyl side chain and aromatic ring structure. We control its synthesis tightly because slight deviations show up immediately in both chromatographic fingerprint and performance. Moisture content, heavy metals, and solvent residues all fall well under typical industry tolerances—our specific batch records support this on request.
What draws attention from R&D teams across sectors is more than marketing trends. 6-Paradol exists in small amounts in grains of paradise and ginger, and research connects its chemical structure to bioactivity of natural plant extracts. Many find it interesting not just as a flavor ingredient but as a potential skin care component, especially for antioxidant blends.
Direct clients often mention they chose our 6-Paradol after separately running comparative tests on batches from several traders. Performance in oxidative stability, crystal purity, and solubility stands out as a result of tight in-house controls. When extracting from raw botanicals, yields hit a practical wall and variability grows with every new batch. We prefer maintaining reliable chemical composition from lot to lot, recognizing that quality variation often traces back to inconsistent synthesis methods or questionable warehousing elsewhere.
Formulators look toward 6-Paradol for several practical reasons. In personal care and cosmetics, the molecule’s structure lets it partner easily with natural preservatives and antioxidant systems. Our clients see success using it to reinforce anti-oxidative claims, or to introduce gentle warming sensations in topical applications that avoid harsher synthetic agents. Every batch undergoes solubility and compatibility checks against typical carrier oils and emulsifiers, since downstream performance matters as much as traceability.
Not every ingredient fares well through heat, oxygen, and multiple production cycles. Through repeated project collaborations, we’ve watched 6-Paradol hold up. We also support technical Q&A directly, fielding customer questions about blending, scaling up, and overcoming the occasional unexplained crystallization during storage. These real conversations shape continuous improvements on our production line.
Years spent overseeing purification, testing small-scale pilot runs, and working with research chemists taught us where shortcuts lead. Some producers lower costs by accepting lax crystal separation or forgo fresh catalyst in the key steps. These time-savers show up as off-odors or yellowing, which we weed out before even considering a lot for sale. Our teams perform all main steps on-site and document each run, so we can back every claim with batch-level results—right down to impurity profiles.
We avoid the frequent pitfalls of the secondary ingredients market. Material changing hands repeatedly, aged without proper controls, or repackaged by traders with only fleeting knowledge end up causing headaches for labs seeking reliable performance. Submission of samples from our main reactors means we stand behind every lot. We never depend on off-the-shelf, relabeled material; our reputation relies too heavily on direct oversight and accountability with end users.
Chemists, product managers, and procurement folks regularly ask why 6-Paradol isn’t more widely available. Natural supply offers only a trace, so synthetic pathways become a necessity for scale. We’ve invested in rigorous batch testing, and each lot ships with full supporting documentation.
Another frequent query: What’s the profile of our typical 6-Paradol customer? We see orders from trend-setting hair care brands, oral care launches, niche flavor houses, and academic groups running new lines of cell-based testing. Many compare our lot-to-lot reliability favorably to materials they’ve tried through brokers or experimental semi-purified extracts.
A concern sometimes raised involves interaction with preservatives, fragrances, or certain carrier oils, especially for brands working with minimalistic ingredient lists. We’ve worked through several customization projects with R&D labs who wanted to match a very particular use scenario. This open dialogue never goes unnoticed; they often circle back with their next round of product development ideas.
With ongoing lab partnerships, we make a point of sharing all quality certificates as a matter of course. Many global markets now expect documentation on purity, residual solvents, and contaminants, particularly heavy metals and microbial content, even for synthetic nature-identical substances. We welcome requests for supporting data, always prepared to submit our COAs and analytical charts because we generated those reports ourselves, not borrowed from an overseas marketing firm.
The specifics matter. For every lot, our regular HPLC and GC-MS readings go beyond check-the-box compliance. Colleagues from academia once sent us a series of questions on minor impurity peaks in a rare batch, and our in-house team dove straight into root cause mapping, offering specifics on every anomaly. These direct technical answers help product innovators move forward rather than getting stuck with uncertainty.
We’ve watched trust erode rapidly when traders swap or relabel materials, moving through anonymous supply streams. In our view, transparency comes from running everything under one roof, publishing every analytical result, and picking up the phone when there are unexpected questions. If a customer gets inconsistent sensory results in a batch of flavored lozenges or a new serum run, we help review analytical records until we find the issue, even if it takes days.
Our history and day-to-day choice to stay independent from distributor networks mean every shipment leaves our warehouse after direct sign-off by our technical and QA leads. Customers looking for the cheapest per-kilo ingredient won’t find us at the bottom of a quote sheet, but formulators and engineers searching for evidence and honesty regularly tell us they value that more than rock-bottom prices.
Years of chemist feedback have taught us that practical quality checkpoints matter most. It’s easy to let fine differences in crystal habit, melting range drift, or color slip through unnoticed if responsibility gets outsourced. Every tank gets checked for trace solvent residues, so musty off-notes and discoloration stay a rarity. Batches held longer than our in-house standard get course-corrected, not blended away.
Our technical team maintains open conference lines with clients rolling out new applications, especially those in growing wellness categories. Sometimes we even run test blends specifically requested by partners who want data on unusual oil mixtures or unique ratios. If unexpected haze or sediment appears in storage, we take it as a challenge, run fresh analyses, and share updates—never hiding behind filler text or glossy sales one-pagers.
Inside the phenolic family, molecules like 6-Gingerol, 6-Shogaol, and 6-Paradol draw understandable comparisons. Structurally, 6-Paradol stands out with its saturated side chain configuration, offering different bioactive and sensory profiles. 6-Gingerol and derivatives found in ginger carry distinct spiciness and sharper, less stable aromatic content. 6-Shogaol, another degradation product of gingerol, brings even greater pungency and less shelf-life stability.
We keep house analytical standards for each—useful for product development teams aiming for narrow flavor notes, gentler warming effects, or tailored antioxidant responses. Researchers and processors interested in clean-label extracts often benefit from clear distinctions in solubility, melting range, and aromatic consistency. Compared to common paralogs, our 6-Paradol delivers a more neutral aroma and shelf stability, which is key for sensitive cosmetic or oral care applications.
Manufacturing quality isn’t an accident of equipment or certifications alone. Over time, our process engineers have caught small errors—a sticky batch or a filtration hang-up—before these small slips could affect downstream users. We watch instrument readings as closely as we scrutinize crystal structure under the microscope.
Dexterity, habit, and sheer experience shape final product reliability. That means taking challenges in stride, rerunning purification if there’s an outlier result, or occasionally chasing down a supply chain hiccup in solvent purity. Many competitors see these as slowdowns; we see them as core to building both product consistency and customer trust.
Open dialogue with partners—often hours on the call to review results, process tweaks, or brainstorm improvements—shows up in finer product. The market rewards both transparency and real expertise, which only comes from being present at every step.
Plenty of conversations with buyers start with the same question: Where is this from, really? Our quality assurance process demands records from each batch, linking raw material lots, reactors, purification runs, and final QC checkpoint summaries. This is rarely the case when product changes hands repeatedly in the market.
On rare occasions, a customer requests blind re-testing because something feels off. Our open files and batch reserve samples make it easy to verify, rerun tests, and share full raw data. This approach repairs trust quickly—no runaround, no pass-the-buck. Where others offer generic promises, we stand ready with original chromatograms, spectra, and product photos.
Manufacturing for a global customer base means recognizing and aligning with regulatory standards in every region. With increasing attention on traceability and transparency, regulatory agencies ask tough questions about provenance and consistency. Our documentation record answers these concerns, backed by up-to-date certificates, origin statements, and rigorous in-house analytical data.
Customers working under premium clean-label requirements or strict European cosmetic standards need full transparency. We run ongoing compliance checks, participate in regular audits, and work with legal teams to ensure shipment paperwork meets evolving standards. Global business thrives on these details; missing them holds up launches or undermines brand reputation.
We never treat our role as a silent supplier. Direct relationships with scientists, innovators, and regulatory professionals shape product improvements. Feedback cycles directly back into our process engineering, which lets partners move faster, troubleshoot issues, and open up new applications.
Some of our earliest relationships began with simple conversations about pre-formulation data or challenges with other suppliers’ variable quality. Over time, shared documentation and real-time technical troubleshooting built trust. As end-use categories for 6-Paradol expand—such as adaptive skin care, gentle warming formulations, or antioxidant flavor systems—these partnerships keep raising the bar on what’s expected in every batch.
Working as a manufacturer is both demanding and deeply rewarding. For our teams, nothing beats receiving direct feedback from a product launch that succeeds, made possible because the ingredient performed as specified, sample by sample, every time. Each improved protocol draws from accumulated knowledge, hands-on adjustments, and steadfast partnerships with like-minded clients.
If you are looking for 6-Paradol, real answers, and the assurance of independent manufacturing, we invite you to start a conversation with us. Bring your challenges, your technical doubts, or your novel application needs. Our team thrives on transparency and technical exchanges, which keep us grounded—and constantly improving.
Manufacturing lies at the heart of product performance and reliability—never an afterthought. By keeping control and accountability close to home, and sharing what we know openly, we help transform ideas into tangible results. Let’s keep building something better together, batch after batch.