| HS Code | 695026 |
| Product Name | Indolyl Carbinol |
| Chemical Formula | C9H9NO |
| Molecular Weight | 147.18 g/mol |
| Appearance | White to off-white crystalline solid |
| Melting Point | 96-99°C |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Cas Number | 700-06-1 |
| Purity | Typically ≥98% |
| Storage Conditions | Store in a cool, dry place away from light |
| Boiling Point | 345°C at 760 mmHg |
| Synonyms | 3-Indolylmethanol; Indole-3-carbinol |
| Odor | Odorless |
| Stability | Stable under recommended storage conditions |
As an accredited Indolyl Carbinol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Indolyl Carbinol, 25g, is supplied in an amber glass bottle with a secure screw cap, labeled with safety and handling instructions. |
| Shipping | Indolyl Carbinol is shipped in tightly sealed containers to prevent moisture absorption and contamination. The chemical is handled in compliance with standard safety regulations, including labeling and documentation. Packages are cushioned against physical shocks and stored in cool, dry conditions during transport to ensure product stability and integrity upon delivery. |
| Storage | **Indolyl Carbinol** should be stored in a tightly sealed container, protected from light and moisture, and kept at a cool temperature, preferably in a refrigerator (2–8°C). Avoid exposure to air and sources of ignition. Store in a well-ventilated area, away from incompatible substances such as strong oxidizers and acids, to maintain chemical stability and prevent decomposition. |
Competitive Indolyl Carbinol prices that fit your budget—flexible terms and customized quotes for every order.
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Years spent at the heart of chemical synthesis have shown us something simple: only things that work in practice truly matter. Indolyl Carbinol isn’t a theoretical invention created in a vacuum. It’s a compound that grew out of hard questions from formulators and fellow manufacturers, looking for something with stability, clear structure, and a spectrum of chemical reactivity. By choosing to craft Indolyl Carbinol in-house, we've gained a close-up view of its behavior during every step — from raw materials to packed drums leaving our warehouse.
Indolyl Carbinol, or 3-Indolylmethanol in some technical circles, combines an indole ring with a methanol unit. This configuration gives it its characteristic pale crystalline appearance and a scent many lab workers recognize straight away. We adhere closely to specifications favored by both fine chemical synthesizers and the pharmaceutical development sector. Our main model, 99% assay, stands out due to the consistently low moisture content, which plays a pivotal role in reproducibility for catalytic testing and step reactions. Occasionally, custom synthesis—driven by requests from our long-term clients—pushes us to offer bespoke grades, either with altered particle size distribution or enhanced purity, targeting very specific synthetic pathways.
Anyone who has scaled up a bench process to full production knows that a single impurity in the wrong place can ruin a batch. We maintain an assay above 99%, and we regularly test for related compounds such as indole and 3-indolylacetaldehyde that might creep in if the synthetic route is even slightly out of tune. Moisture content—even a few tenths above the standard—can trigger side reactions, affecting yields and purity. For this reason, each batch undergoes rigorous drying and double-sealing before shipment.
The most common feedback from formulators starts with their appreciation of the reactivity, especially the nucleophilic site. That opens up direct use in pharmaceutical intermediates, particularly in building blocks for kinase inhibitors, anti-proliferative agents, or other lead molecules. A few years back, one of our earliest clients shared their success synthesizing a novel library of indole derivatives for agrochemicals, where minor changes in purity made huge differences in efficacy. Polymer chemists discovered value in Indolyl Carbinol for introducing indole character into specialty polymers, aiming for UV-protection properties or for electronics with specific charge transport features.
Folks working on nutritional science studies often give us a different kind of challenge. They need consistent, high-purity Indolyl Carbinol because even low parts-per-million impurities can muddy up results in animal model testing. For this group, we stick to a more demanding specification on heavy metals, since those contaminants interfere with both cell culture assays and eventual regulatory discussions. Reproducible purity is not just a matter of compliance; it also reflects the pride of everyone at our site putting hands on the product.
The industry offers choices, with intermediaries chasing price over all else. Cutting corners on synthesis—using cheaper precursors, incomplete final purification, or skipping a recrystallization—tends to show up fast. The result? Irreproducible yields, colored by-products, or even instability that shows up as rapid darkening in storage. We learned the hard way, running pilot batches side-by-side with imported Indolyl Carbinol, noticing not just visual differences, but chromatographic profiles that didn’t stack up.
People ask about the main distinction between our in-house Indolyl Carbinol and cheaper versions from trading sources. For us, it’s about control at every step. We monitor the key synthetic stages—starting from indole raw material quality tracking, through precise timing on the methanol addition, to careful pH adjustment before work-up. Quality isn’t something bolted on at the end; it comes from choosing the right solvents, running reaction analytics every few hours, and refusing to skip those boring but essential thin layer chromatography checks.
On more than one occasion, new clients have reached out after struggling to replicate published syntheses or after their old supplier yielded inconsistent batches. In most of these cases, a close look at the available Indolyl Carbinol lots showed a common root cause—a lack of attention to purification or careless exposure to air and humidity. Over time, we built up drying rooms, degassing protocols, and storage solutions based on real world lessons, not classroom theory.
Feedback pushed us to rethink packaging too. For sensitive R&D environments, glass ampoules with sealed inserts cut out all air ingress, and even with bulk orders, we double-bag under inert atmosphere. A drop in color quality or a rise in HPLC impurity peaks immediately triggers a reinspection and recall if necessary. This hands-on vigilance grew not from luxury, but from listening to chemists at the bench talk about wasted project days due to unreliable materials. Our in-house culture rewards team members who catch a problem early, not those who move highest volume.
In drug development, screening dozens of analogs pushes demand for reliable, consistent starting materials. Indolyl Carbinol consistently acts as a building block in the synthesis of compounds aimed at modulation of hormone signaling, such as in estrogen or androgen pathway studies. Lab teams tire quickly of vendors who promise high purity but deliver off-spec materials, forcing multiple rounds of re-purification. Scientists on tight timelines recognize that consistent purity saves both time and funding.
Researchers branching into agricultural chemistry gravitate toward Indolyl Carbinol for its easy-to-modify side chain, leading to a family of plant protectants and growth modulators. Every once in a while, academics pioneering new synthetic methodologies approach us for tailor-made lots, where moisture, metal content, and impurity profiles affect reproducibility of catalysts or novel reaction conditions. Here, our on-site analytical lab provides not just standard COAs, but also chromatograms and spectral data if asked. This transparent collaboration often supports not only their publications but also their grant applications.
No manufacturer gets things perfect from the start. We learned much from early production runs that didn’t make the grade. One year, moisture spikes during the rainy season led to complaints about off-smells and slow degradation on the shelf. Fixing this challenge meant modifying HVAC, overhauling drying ovens, and tightening the transfer protocols. Success didn’t come overnight, but those hard lessons mean our standard product now far outpaces earlier lots not just in purity, but also in storage life.
Laboratory managers appreciate that we keep a line open for process feedback. If they spot a trace impurity or drift in melting point, they flag it, and we investigate, tweak, and document changes. That’s not sound bite-ready, but in the long run, iterative back-and-forth means the final product meets not just today's, but tomorrow's specifications.
Pharmaceutical research often operates under time pressure and tight milestones. Screening runs tie resource schedules down to the hour. Some researchers recounted delays of weeks, simply because received Indolyl Carbinol failed key controls. Often, even minor lot-to-lot variation forced additional verification, draining budgets and patience. We prioritize the fine details—crystallinity, color, and spectral alignment batch after batch. This reliability translates into confidence in downstream synthesis, reducing unplanned troubleshooting in both academic and industrial settings.
Some industrial polymer researchers seeking to incorporate indole nuclei into their materials faced issues from inconsistent reactive group content. They reached out after realizing that the source of failure sat with overlooked side impurities. We shared detailed GC-MS comparisons, highlighting how our controlled process produced cleaner, more predictable material. This level of engagement transformed their pilot projects, allowing for scale-up with minimal requalification.
Many chemicals come close to Indolyl Carbinol on paper. Indole, tryptophol, or other indolyl derivatives show up in catalogs, tempting buyers with slightly lower costs or shortened lead times. What differentiates Indolyl Carbinol centers around the reactivity from the benzylic alcohol function, giving both nucleophilicity and potential for further elaboration. Our own lab studies demonstrated that the methanol functional group on the indole ring presents unique coupling opportunities not available in the parent indole or simple indolylacetate compounds.
We noticed that small changes in side chain or pure carbon skeleton shift both reactivity and physical storage properties. Some customers, after using indole or indole-3-acetaldehyde for years, switched after running side-by-side tests in synthesis and found Indolyl Carbinol outperformed alternatives where mild nucleophilic addition or controlled reduction steps were needed. Real-world trials convinced skeptics far more than sales pitches, especially in pharmaceutical pilot plants aiming to hit precise regulatory targets.
While distributors focus on shipping dates and paperwork, as the manufacturer, our priorities turn inward—toward the control of chemistry. Our process starts from well-documented indole raw materials and follows a strict batch record, with each stage signed off by staff who know that every small decision affects reproducibility. Controlling exotherm during methanol addition or tweaking crystallization conditions isn’t glamorous, but it determines whether Indolyl Carbinol leaves our facility ready for the next step in your process.
The entire workflow, from solvent recovery to packaging under inert gas, marks out a level of attention that traders can’t mimic. Technical support means chemists and engineers with experience, not just reading data off a script. When you have an issue, you reach someone who spent years running the reactors and who knows the subtleties behind brown tints or humidity pickup — because we've chased down those same issues ourselves.
Manufacturers working directly on product scale-up need more than spec sheets and ticking regulatory boxes. They require a back-and-forth with people who can answer why a certain feature appears, or how an impurity can be knocked down for a particular route. Our development team takes calls from production chemists who want tweaks to solvent systems or altered drying conditions to match unique workflow needs.
As new analytical tools emerge, from high-resolution mass spec to advanced NMR, we adjust our quality checks. Publishing results openly when the product deviates from the norm helps solve problems faster, keeping both development and manufacturing timelines on track. If you report a failed synthesis or abnormal result, we won’t send an empty apology; we open the batch records, run tests, and share what we learn, so you don’t hit avoidable roadblocks again.
INDUSTRIAL users chasing lower cost sometimes pick unfamiliar suppliers or cut corners for margin improvement, but the conversation often returns a year later when inconsistent product impacts downstream quality. Over time, we’ve watched customers return not just because the price is right, but because they can trace every key quality metric back to specific in-house records and operator initials. Our own chemists take pride in knowing which batch solved a process snag or helped a partner publish key new research.
Building that trust doesn't happen over a single transaction. It grows from years working with the same scientists, adapting as research pivots, and investing in new purification or drying systems when customer needs shift. Education, especially around proper handling and storage of Indolyl Carbinol, forms a big part of our relationship. We regularly run workshops on avoiding cross-contamination and prolonging shelf life, benefitting not just newcomers but also experienced techs looking to tighten up their workflow.
Market demand never stays still. New catalyst systems, green synthesis methodologies, and regulatory shifts all influence what’s expected from a chemical intermediate. We stay in front of these changes, revising our synthetic techniques not just for today's norms, but for emerging needs, such as minimizing residual solvents or moving to renewable feedstocks for the core indole ring. That means ongoing training for our staff and continuous investment in new equipment.
Sustainable practices also take root here. Recovery of solvents, improved waste stream management, and energy-saving in drying all matter—not only under increasing compliance pressure but because real-world chemists value traceability and environmental accountability. Our aim: to offer Indolyl Carbinol that not only delivers chemical performance, but also supports the growing shift toward responsible, transparent manufacturing.
The inside view—from synthesis through storage and shipping to detailed feedback loops—shapes how we see Indolyl Carbinol. It isn’t just a chemical on a spreadsheet or a catalog page. It reflects years responding to working chemists, refining processes to handle the real demands of research and large-scale manufacturing, and fostering the relationships that drive innovation beyond a single batch.
For every unit shipped, we know someone’s workflow rides on the consistency and reliability of what we've produced. Our team stands ready, not just to fill orders, but to troubleshoot, adapt, and continue improving. That’s how Indolyl Carbinol leaves not only our loading dock, but also a lasting mark on the projects and collaborations of those who trust their science to our hands-on approach.