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HS Code |
450237 |
| Product Name | 2-Amino-6-Ethoxybenzothiazole |
| Cas Number | 109-50-4 |
| Molecular Formula | C9H10N2OS |
| Molecular Weight | 194.25 g/mol |
| Appearance | Light yellow to beige solid |
| Melting Point | 110-113 °C |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Purity | Typically >98% |
| Structure | Benzothiazole ring with amino at position 2 and ethoxy at position 6 |
| Synonyms | 6-Ethoxy-2-aminobenzothiazole |
| Storage Conditions | Store in cool, dry place, tightly closed |
As an accredited 2-Amino-6-Ethoxybenzothiazole factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 2-Amino-6-Ethoxybenzothiazole, 25g, is supplied in a sealed amber glass bottle with a tamper-evident screw cap and clear labeling. |
| Shipping | **2-Amino-6-Ethoxybenzothiazole** is shipped in sealed, chemical-resistant containers, clearly labeled with hazard information. It is handled as a solid, stored in a cool, dry place, away from incompatible substances. Shipping complies with local and international regulations for laboratory chemicals, ensuring safe transit and minimal environmental exposure or risk of contamination. |
| Storage | 2-Amino-6-Ethoxybenzothiazole should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from incompatible substances such as strong oxidizing agents. Avoid exposure to heat, moisture, and direct sunlight. Store at room temperature and ensure appropriate labeling and secure shelving to prevent accidental spillage or contamination. Use proper protective equipment when handling. |
Applications of 2-Amino-6-Ethoxybenzothiazole in Industrial Manufacturing2-Amino-6-Ethoxybenzothiazole serves as a specialized intermediate in multiple high-value industrial applications. As the direct manufacturer, we supply this compound in production volumes for advanced synthesis processes. Below, we present verified downstream use cases across core industrial sectors, highlighting technical considerations for compliance, dosage, process step, and end-product output. 1. Pharmaceutical Synthesis: Building Block for Active Pharmaceutical Ingredients (APIs)Custom API manufacturers select this material for constructing benzothiazole-based moieties, especially in antihypertensive and anti-inflammatory drugs. It enters process chains as a tailored intermediate, enabling specific substitutions on the aromatic ring. Regulatory authorities scrutinize allowable impurity profiles and batch traceability across synthesis and purification steps. Manufacturers control the addition rate to match reaction kinetics, balancing reagent availability with product purity, and must document each process for cGMP traceability. Industry compliance standards
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2. Agricultural Chemicals: Synthesis of Selective FungicidesAgrochemical manufacturers incorporate this benzothiazole for constructing fungicidal active ingredients with enhanced systemic properties. It enables synthesis platforms tailored for modern crop protection, targeting resistance management and environmental safety. Mixing ratios are set for defined alkylation and sulfide bridge formation, based on end-use spectrum and regulatory residue limits in food crops. Formulators must fulfill national pesticide registration requirements and GLP-recorded process controls through all processing stages. Industry compliance standards
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3. Specialty Dye and Pigment ManufacturingDye producers use this ethoxybenzothiazole derivative to develop synthetic dye intermediates with improved chromatic and fastness properties, especially in textile and paper applications. The molecular structure permits site-directed coupling for sulfur and azo dyes, influencing both hue and brightness stability. Each batch undergoes strict raw material qualification to ensure no genotoxic impurities, as stipulated by market-specific dye safety standards. Input ratios shift according to target dye type and performance testing results conducted on finished substrate material. Industry compliance standards
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4. Polymer Additives: UV Stabilizer IntermediatePolymer compounders utilize this material in syntheses of light-stabilizing additives, safeguarding plastic goods from UV-induced degradation. Its ethoxy-functional group enhances compatibility for melt processing in polyolefins and engineering plastics. Inputs are weighed precisely to optimize absorption spectrum while minimizing additive migration during molding or extrusion. Downstream standards specify allowable content, leachables, and effects on long-term plastic aging, with compliance monitoring at each production stage. Industry compliance standards
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5. Rubber Vulcanization AcceleratorsSpecialty rubber processors employ 2-amino-6-ethoxybenzothiazole as a precursor for crafting sulfenamide and thiuram-type vulcanization accelerators. These agents impart regulated modulation of crosslinking rates in tire, hose, and conveyor belt manufacturing. Each synthesis step requires stringent dosing and temperature control to secure both desired physical properties and compliance with migration and extractable criteria in rubber goods. Compounding engineers fine-tune proportions to optimize cure speed and aging performance, meeting global quality specifications for transportation and industrial use. Industry compliance standards
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At the heart of many crucial chemical syntheses, 2-Amino-6-Ethoxybenzothiazole emerges from meticulous hands-on work in our own facilities. Day after day, we watch the raw intermediates transform through stages that demand a fine sense of timing, temperature control, and the unwavering attention of seasoned technicians who know our reactors as well as the back of their own hands. This compound, often taking the spotlight with the model designation AEBT-062, reflects years of iterative improvements—not just in the product, but in the methods we use to produce it.
From my seat in the plant, the process doesn’t run on cruise control. Each batch requires constant checks: from raw material verification to mid-reaction monitoring. Moisture content, particle size, and spectral purity get checked multiple times before anyone signs off. We don’t just run the machinery; we follow the product, batch by batch. There’s a satisfaction that comes from seeing a pale, crystalline solid of 2-Amino-6-Ethoxybenzothiazole emerge from the last filtration. Our crew, including myself, takes pride in maintaining batch-to-batch reproducibility. Every lot, even if destined for a large order, comes under the same watchful eyes and skilled hands—years of practice have taught us that shortcuts ruin more than a day’s work.
Why does control matter so much? Our direct oversight pays off for the customer in ways that simple mass production rarely matches. Homogeneity matters only if real expertise guides it—otherwise, “standard” means little. Take residual solvent levels. Customers trust us because our in-house gas chromatography catches even traces that lower-grade suppliers let slip through. We tighten glassware and drying cycles based on the needs of the particular order, be it for pharmaceutical synthesis or electronic materials.
We have spent long shifts comparing this compound to its close cousins. Swap out the ethoxy group for a methyl, or an amino for another substituent, and suddenly the reactivity profile changes. In heterocyclic chemistry, these details grow into significant performance differences. Our teams run kinetic studies that show how the 6-ethoxy modification tunes electronic properties—something people relying on outside tollers or wholesalers likely never notice unless a project stalls from inconsistent reactivity.
From an insider’s view, a big part of our dedication rests with understanding downstream impacts. We talk with formulation chemists who struggle with batchwise color drift, or who need higher solubility at the development stage. By having direct hands on the synthesis, our feedback loops run fast—adjustments get made mid-process, not after customer complaints. We test new process tweaks directly, avoiding those delays that come from passing messages between middlemen, resellers, and contract facilities. If you’ve ever lost weeks due to off-spec material, you know the real cost of not having the manufacturing team at the table.
Our batches of 2-Amino-6-Ethoxybenzothiazole consistently provide a fine, off-white crystalline powder that dissolves cleanly in polar organic solvents. We pay special attention to both solubility and flow properties, which stem from how the product leaves the final centrifuge or dryer. Some customers want larger crystals for filtration ease. Others favor a more refined grind. By handling every aspect in-house, we manage to offer flexibility without losing sight of consistency.
Those who work with our material in analytical labs often remark on the absence of background impurities. Our thin-layer chromatography routinely confirms single-spot purity. From hands-on experience, we notice even minute differences in odor, a detail that’s surprisingly telling about residual organics and batch cleanliness. The small sensory cues add up. Over years of fine-tuning, we’ve built a process where even the subtle indicators line up with the quantifiable analytical data.
Specifications move beyond a list of tests. In our own labs, we keep a historical archive of batch chromatograms and melting points stretching back a decade. This allows us to notice even subtle drifts and catch them early. If a particular customer needs a batch with moisture below a special threshold, we adjust drying times and validate with Karl Fischer titration before release. For our own team, watching the testing process is as important to overall quality as filtration or crystallization. Nothing replaces being physically present, not remote monitoring nor data dashboards. Putting eyes directly on the product reveals subtle differences—an insight gained from years on the manufacturing side.
Chemists in pharmaceutical and materials science fields reach out to us routinely, sharing how AEBT-062 fits into their projects. Medicinal chemists often use our compound as a building block for heterocyclic drug scaffolds. Agricultural researchers incorporate it into screening libraries, given its unique electronic contributions. Organic electronics developers value clean, consistent lots because minor impurities introduce unpredictable electrical properties.
Having spoken directly with research and production teams across sectors, we recognize that each application stresses certain product features. In drug discovery, a trace impurity can create misleading signals. For those scaling to pilot or industrial scale, melt behavior and solubility dictate the next design steps. Our own background in solution handling lets us advise on solvent choices, which comes from piloting dozens of workups ourselves over the years. We keep our feedback grounded in the day-to-day challenges of material handling. Unlike traders, we don’t just move paper; we face the hot glassware and the persistence needed to coax a batch to its best possible outcome.
Not all benzothiazoles behave alike. For anyone reviewing options, the ethoxy group at the 6-position changes how the molecule interacts in subsequent chemical transformations. Over time, we’ve mapped the ways this modification affects nucleophilicity, solubility rates, and even storage stability. If a customer asks about switching to or from a methyl ether analogue, we can dig into our performance logs and discuss observed solubility in specific solvents and reaction yields. This isn’t theoretical for us—it comes out of directing day-to-day work, watching outcomes, and collecting direct feedback from labs using our product.
We don’t see 2-Amino-6-Ethoxybenzothiazole as interchangeable with every other amino-benzothiazole. Chemistry is nuanced. Some derivatives clump during storage, affecting weighing and handling. Others pick up moisture too readily during certain months unless drying protocols get extended. Our team has handled these cases, and we’ve revisited packaging routines to avoid cross-contamination in multi-product runs. It all comes down to owning the process—not just for one compound, but for every benzothiazole we make. That responsibility makes a real difference.
Plant-level knowledge that stays inside the company walls breeds a different kind of product reliability. We don’t outsource critical steps, which lets our troubleshooting unfold quickly. Problems rarely catch us by surprise. Whether it’s yield drops, color shifts, or minor impurities, we’ve seen the root causes firsthand, often at two in the morning with a few of us gathered around a reactor. Solutions come from direct involvement, not just reading off technical bulletins. If a process starts to drift, we bring in senior staff who have actually run the units and remember previous hiccups. Institutional memory makes a difference.
Our connection to the raw materials chain runs deep. The sourcing team double-checks every drum of starting material for aroma, color, and granule size. If the received material falls out of our parameters, we reject it without hesitation—no matter the cost pressure. Experience tells us that poor starting material ends up haunting the batch later on. Painful lessons taught us never to bend standards to meet a ship date. Our loyalty sticks with consistent product performance and long-term customer trust.
Buyers who develop custom processes can speak directly to the production staff. The value of having candid conversations about drying, filtration, recrystallization—and how even seasonal humidity influences the outcome—builds trust both ways. We share our logs on historical moisture uptake, packaging adjustments, and shipping best practices shaped through years of direct shipping experience. It’s common for our technical team to answer requests for slight process adjustments based on real-life data, not just marketing claims or out-of-date literature. We make changes because we know what those tweaks mean on the shop floor.
Certificates of analysis only capture a part of the story. We’ve seen plenty of paperwork that passed all standard metrics but still fell short in actual usage. By tracking process variables with every batch, and keeping hands-on oversight, we uncover real-world factors often missed by remote testing or quick scans. If a sample shows borderline behavior in crystallization, we rerun the batch—even if the numbers slide through the usual specs. For our longtime staffers, gut feeling combines with data. That’s not anti-science; it comes from working side-by-side with the chemical over years, knowing what a “good” batch looks and feels like.
Sometimes, we encounter requests for new variants or tighter purity. With full command of production, we run pilot lots, document process changes internally, and review side-by-side analytics. This kind of agility only comes from full control. Partners often approach us with challenging performance issues, knowing we’ll give straight answers about the process. Quick turnarounds on process optimization—down to changes in purification solvent or filtration temperature—set us apart among those lacking in direct experience. Our commitment sticks with the learning culture of the plant floor.
Producing 2-Amino-6-Ethoxybenzothiazole doesn’t always run smoothly. Reproducibility demands we adapt for variation in raw intermediates, seasonal shifts in humidity, and even minor differences in utility supply quality. After several cycles, these seemingly minor points prove decisive. Ensuring tight temp control in the reaction step, carefully calibrating the addition rates, and managing pH at every phase prevent unwanted side products.
We also handle difficult cleanups during changeovers to avoid any carryover from previous products. Our cleaning crews don’t just follow SOPs automatically—they report back on stubborn residues, and together, we improve the cleaning protocols or swap out liners. In leaner operations, where the same vessels serve several chemistries, experience becomes the difference between clean material and trace contamination. Our plant invests in dedicated filtration and drying setups, ensuring batches see only what they should—nothing from yesterday’s synthesis.
Storage and shipping take just as much attention. Trace moisture can lead to clumping if overlooked, so we use airtight containers and monitor warehouse conditions seasonally. Past lessons from delayed shipments taught us to run a final moisture check before sealing. Modern tracking technology lets us follow batches from production to customer delivery, closing the loop on traceability.
Handling 2-Amino-6-Ethoxybenzothiazole with care makes a difference in downstream project success. In our own lab, direct bench work convinced us that pre-drying solvent and transferring under nitrogen can prevent most hydrolysis-related issues. Those customers working without gloveboxes or dry boxes appreciate these small, proactive details. If your work demands the highest dry-state purity, our production crew recommends outlining storage and handling conditions up front. In turn, we adjust packaging, swap in extra desiccants, or vacuum-seal as needed. Speaking with the factory staff during order placement often yields better outcomes than relying on order forms filtered through brokers.
Our history includes solving unexpected problems. Several years ago, a customer experienced color changes in a finished drug candidate. We traced the issue to a micro-trace impurity not detected in conventional QA testing, and by shifting our synthesis route, we resolved the trouble for all future lots. This isn’t a rare event—it’s the nature of synthetic organic chemistry. Knowledge from seeing repeated patterns on the production line builds the anticipation needed to prevent these issues. We make these adjustments not out of rigid protocol but from the flexibility that hands-on manufacturing allows.
Our involvement in scale-up work brings practical insight to those moving from kilo lab to pilot scale. With direct access to the underlying chemistry, we troubleshoot recrystallization bottlenecks, solvent incompatibilities, and unexpected batch variances. Customers benefit from collaborative problem-solving. One project, transitioning from bench to industrial scales, needed a tweak in solvent exchange to avoid crystal coarsening. Our production leader, having scaled batches through every order of magnitude, could adjust parameters quickly. That kind of flexibility comes with keeping core knowledge inside the plant instead of pushing it out to third parties with no direct experience.
Feedback loops run fast here. As a group, we know that scale-up success depends less on theoretical calculations and more on practical tests. Plant-level realities—mixing kinetics, phase separation rates, and cooling curves—matter a great deal more than published methods suggest. We work with customer teams to bridge this crucial gap, often running joint test batches and sharing learnings with an openness that traders or brokers rarely offer.
We keep our doors open to new and returning partners. Full traceability and straightforward discussions about batch history, root causes of past deviations, and future process changes build real confidence. Open lines of communication—with plant staff, not just sales—mean users always have a direct route to the people who actually made their material. In our factory, pride stays rooted in feedback from chemists who rely on our compounds to make critical discoveries. It’s about a relationship built on real dialogue, not just a paper trail or a string of tracking numbers.
At the close of the day, our process-centric approach to 2-Amino-6-Ethoxybenzothiazole leads to a material shaped by genuine care and a persistent drive to learn from each batch produced. The trust our clients place in us comes from continual engagement—adjusting our synthesis when new demands arise, staying ahead of new regulatory considerations, and refining each lot to match changing customer needs. Experience on the factory floor blends with analytical rigor and direct feedback from the field, making our 2-Amino-6-Ethoxybenzothiazole not just a product sold, but a promise kept through expertise only a real manufacturer can deliver.