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2-Amino-6-Methoxybenzothiazole

    • Product Name 2-Amino-6-Methoxybenzothiazole
    • Alias 2-AMBT
    • Einecs 243-418-5
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    386354

    Chemicalname 2-Amino-6-Methoxybenzothiazole
    Casnumber 34115-84-3
    Molecularformula C8H8N2OS
    Molecularweight 180.23 g/mol
    Appearance Light yellow to brown solid
    Meltingpoint 148-153°C
    Solubility Slightly soluble in water; soluble in organic solvents like ethanol and DMSO
    Purity Typically ≥98%
    Storagetemperature Store at 2-8°C (refrigerated)
    Smiles COC1=CC2=C(S1)N=C(N)N2
    Inchi InChI=1S/C8H8N2OS/c1-11-5-2-3-6-7(4-5)12-8(10)9-6/h2-4H,1H3,(H2,9,10)

    As an accredited 2-Amino-6-Methoxybenzothiazole factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The 25g package of 2-Amino-6-Methoxybenzothiazole comes in a sealed amber glass bottle with clear chemical labeling.
    Shipping 2-Amino-6-Methoxybenzothiazole is shipped in tightly sealed containers to prevent moisture and contamination. The chemical is classified as non-hazardous for transport and should be stored in a cool, dry place away from direct sunlight. Ensure it is handled in accordance with appropriate safety guidelines and regulatory requirements during shipping.
    Storage 2-Amino-6-Methoxybenzothiazole should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from sources of ignition and incompatible substances such as strong oxidizing agents. Protect from moisture and direct sunlight. Label the container clearly and keep it in a dedicated chemical storage cabinet to prevent contamination and ensure safe handling.
    Application of 2-Amino-6-Methoxybenzothiazole

    Applications of 2-Amino-6-Methoxybenzothiazole in Industrial Manufacturing

    2-Amino-6-Methoxybenzothiazole serves as a specialized intermediate in multiple industrial manufacturing fields. As a direct manufacturer, we supply high-purity material to customers advancing their formulations and process innovations. Below, our team outlines the principal application scenarios with precise compliance, dosage, integration, and product details.

    1. Pharmaceutical Intermediate for Cephalosporin Synthesis

    This benzothiazole derivative enters the supply chain as a core building block in the synthesis of advanced-generation cephalosporin antibiotics. Regulatory frameworks in the pharmaceutical sector mandate traceable, impurity-controlled sources for API sidechain intermediates. Manufacturers incorporate our material during key heterocyclic coupling and acylation steps to build out beta-lactam antibiotic cores, with our quality system supporting process validation and material characterization throughout scale-up and GMP production.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP-NF monograph requirements for APIs and intermediates
    • EDQM CEP guidelines for route-of-synthesis documentation
    • FDA 21 CFR Part 211 for pharmaceutical manufacturing

    Typical usage ratio

    • 0.7–1.1 molar equivalents relative to acylating agent in cephalosporin side-chain assembly, adjusted according to downstream impurity profile and reaction yield optimization.

    Downstream process integration

    • Charged after completion of core beta-lactam structure to introduce the benzothiazole moiety via coupling in solvent-based systems, often using acid chloride activation and controlled pH conditions. Direct feed into multi-step synthetic reactors for large-scale batch processing.

    Final product types

    • Cephalosporin antibiotic APIs (e.g., Cefotiam, Cefixime)
    • Bulk pharmaceutical intermediates for registration dossiers
    • Sterile injectable formulations (end-use after further downstream processing)
    • Research-based small molecule libraries

    2. Dye and Pigment Intermediate for Organic Synthesis

    The compound functions as a targeted precursor for synthesis of specialty dyes used in fiber, paper, and plastic coloration processes. Batches meet dye industry requirements for low inorganic residues and consistent tinctorial strength. Customers introduce it in condensation or cyclization reactions to extend chromophores or modify spectral absorption, enabling the manufacture of high-performance dyes for specific end-use requirements in automotive, textile, and recording materials sectors.

    Industry compliance standards

    • EN 71-3 for toy safety regarding coloring substances
    • Oeko-Tex Standard 100 for textile auxiliaries
    • ISO 9001-controlled production traceability
    • REACH (EC 1907/2006) for registration and use of precursors in the EU

    Typical usage ratio

    • 8–20% by mole in multi-component dye synthesis, selected to balance solubility, brightness, and lightfastness properties according to target substrate and color index requirements.

    Downstream process integration

    • Used during the ring-closure or condensation stages in azo, anthraquinone, or thiazole dye synthesis. Reacted in solution-phase processes with controlled heating, often followed by purification and salt formation for pigment preparation.

    Final product types

    • Metal-complex dyes for textile printing
    • Reactive dyes for cellulose fibers
    • Plastisol colorants for PVC formulations
    • Photoresponsive pigments for optical data storage media

    3. Corrosion Inhibitor Additive for Industrial Water Treatment

    The thiazole structure provides the functional group required for formulating corrosion-inhibiting blends used in closed-loop industrial water systems. The compound participates in scavenging and passivating reactions, reducing scaling and metallic ion release. Customers in the boiler treatment sector use it to develop advanced formulations for use under high-pressure, high-temperature conditions, ensuring material compatibility and extended asset lifespans.

    Industry compliance standards

    • ASME Boiler and Pressure Vessel Code Section VI
    • ANSI/AWWA B603 for water treatment chemical use
    • 40 CFR Part 136 for effluent monitoring of water additives
    • ISO 14001 integration for manufacturing operations

    Typical usage ratio

    • 200–800 ppm in formulated product, modulated by water hardness and system metallurgy as determined by on-site corrosion tests and customer process control (dose optimization required per installation).

    Downstream process integration

    • Preblended as a liquid or powder additive in corrosion inhibitor packages. Typically dosed into feedwater lines prior to distribution through industrial water systems or cooling circuits. Compatible with polymers and chelating agents in multitreatment systems.

    Final product types

    • Closed-system corrosion inhibitor liquids
    • Industrial boiler treatment blends
    • Chilled water system additives
    • Metal protection fluids for heat exchangers and pipelines

    4. Analytical Reagent in Laboratory Diagnostics

    Specialty grades of the material support laboratory-scale diagnostics manufacturers in formulating detection kits for biochemical assays. It acts as a chromogenic or derivatization reagent in spectrophotometric and chromatographic testing, offering reproducible reactivity in controlled laboratory environments. Our batches maintain high purity, controlled impurity profiles, and defined particle size distributions to meet analytical requirements.

    Industry compliance standards

    • ISO 13485 Quality Management System for medical device manufacturing
    • FDA 21 CFR Part 820 for in vitro diagnostic production
    • European IVDR (EU 2017/746) for diagnostics reagents
    • Ph. Eur. purity requirements for laboratory chemicals

    Typical usage ratio

    • 0.01–0.2 mg/mL in aqueous or organic solvent matrices depending on the desired colorimetric or fluorescence intensity, with determination based on sensitivity of target assay method.

    Downstream process integration

    • Used in formulation of reagent solutions or as a solid kit component. Added during preparation of test panels, control standards, or derivatization steps preceding analytical measurement in HPLC or spectrofluorimetry setups.

    Final product types

    • In vitro diagnostic reagent kits
    • Clinical chemistry test solutions
    • Standardization solutions for laboratory QA/QC
    • Fluorescence-based detection panels
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    Certification & Compliance
    More Introduction

    2-Amino-6-Methoxybenzothiazole: Made for Practical Demands

    What 2-Amino-6-Methoxybenzothiazole Means to Customers

    In our line of work as chemical manufacturers, some molecules always make a bigger impact. 2-Amino-6-Methoxybenzothiazole has earned a reputation among our customers looking for reliability, consistent performance, and predictable chemical behavior for complex synthesis. We produce this compound with a close eye on purity, since the smallest impurities can throw downstream reactions off, especially in pharmaceutical and materials research. This chemical stands out through every step of production, right from the first charge of raw material to the final pack-out — our focus stays on trust and repeatable quality.

    The core formula stays steady: 2-amino-6-methoxybenzothiazole offers both an amino group and a methoxy substituent on the benzothiazole ring. That particular blend of reactivity and selectivity is uncommon, especially when paired with a consistent crystalline solid form. This isn’t just another building block; its unique structure opens up distinct chemistry not easily achieved with unsubstituted benzothiazoles or similar analogs on the shelf. We’ve received requests from contract pharmaceutical companies, dye manufacturers, and some academic labs, all looking for precise, high-content material — and each outlines different end-goals, underscoring why our commitment to repeatability matters.

    Hands-On Perspectives From Our Team

    Chemistry at scale isn’t forgiving, especially when someone is pushing for reproducibility batch to batch. Take our 2-amino-6-methoxybenzothiazole: we synthesize it under strict controls at every stage, making sure water content, residual solvents, and metal traces stay tight. The melting point stays consistent, powder flows the same through each lot, and we use multiple analytical checkpoints — not just single-point release analysis — to ensure every drum and bottle matches spec. We have also learned the hard way that surface moisture and slightly high byproduct content can derail entire projects for our customers, so we run drying and purification twice where needed.

    A lot of end-users push for HPLC purity well above common commercial grades, especially for R&D and scale-up to regulated markets. Our typical offers hit 99% or better, with residual methanol and known benzothiazole byproducts kept under clearly defined thresholds. It’s never just about meeting a minimum — some reactions seem hyper-sensitive, so we share our own validated analytical data, not just a generic report. This attitude comes from working with customers who remember their last delay from an out-of-spec lot.

    Real-World Application: Where 2-Amino-6-Methoxybenzothiazole Goes

    Research chemists turn to this molecule when they want targeted amination or coupling, and especially where controlled electron density on the ring matters. The methoxy group at the sixth position tweaks the chemistry more than it seems at first glance. Several agrochemical innovators choose it when developing novel compounds because small electronic or steric shifts can alter biological activity and patentability. Pharmaceutically, we see it requested for synthesis intermediates in substituted thiazole-based scaffolds.

    A pattern stands out across our production notes — customers rarely use only one benzothiazole derivative. They ask for comparisons with 2-amino-6-chlorobenzothiazole and 2-amino-6-methylbenzothiazole as well. Our plant crew has first-hand experience with differences in reaction behavior, solubility, crystallinity, and shelf stability across the analogs. Out of these, the methoxy-substituted variant reliably dissolves in DMF and DMSO without the residue issues that can show up in less compatible solvents. The distinctive melting range means customers see less caking or lumping, even after shipment through rough climates.

    Production: What Sets Our Material Apart

    Any manufacturer worth their salt knows how small changes in process conditions can lead to tricky residuals or inconsistent morphologies. We have confronted batch-to-batch variations before, especially in the final ring closure and subsequent purification. Standard literature procedures often leave colored impurities and won’t scale up gracefully. Our process strips these away through dedicated recrystallization steps tailored to prevent colored and tar-like byproducts.

    Customers expect physical appearance to match what analytical numbers show. Each kilogram of our output exhibits strong, reliable color and uniform texture. Our team monitors for caking, handles drift in hydrate level, and checks every drum before final release. Years of navigating customs and storage warehousing have taught us to pack each lot to prevent moisture exposure, which keeps both product appearance and reactivity close to fresh specs months down the line.

    Differences From Similar Substituted Benzothiazoles

    Most newly interested customers ask how 2-amino-6-methoxybenzothiazole stands apart from the longer-standing 2-amino-6-chlorobenzothiazole or the methyl-substituted analog. The methoxy group at position six strongly influences both electron distribution and solubility. The amino group enables coupling or condensation under mild conditions, standing out from bulkier or more electron-withdrawing analogs. Our technical group has run side-by-side reactivity trials: the methoxy-substituted molecule responds better in some direct acylation and electrophilic substitution reactions, offering higher yields where competing products stumble.

    From a stability point of view, the methoxy analog keeps a longer shelf-life under standard dry conditions and is far less hygroscopic than some of its cousins. Our packaging crew sees fewer customer complaints about discoloration or off-flavors on this grade even after storage. Customers using methyl or chloro versions sometimes report more volatility and more frequent need for re-checks before batch use. Laboratories and pilot plants leaning on consistent reactivity often migrate to the methoxy option after these kinds of field reports.

    Downstream, some end-users worry about trace halide content or side reactions with chlorine. The 2-amino-6-methoxy analog sidesteps these, which can make downstream purification much less burdensome, particularly for pharmaceutical pathways gearing up for regulatory reviews. We see increased demand in this segment as compliance frameworks tighten across supply chains.

    Meeting Specifications: What Our Quality Process Looks Like

    As a manufacturer, we work by slightly different rules than a dealer or distributor. We source our own starting materials with a focus on traceability, and our QA team reviews every major lot using both in-house analytics and periodic third-party labs. The specifics shift based on what the final user needs, but primary release hinges on HPLC purity, NMR verification, melt point, and fine elemental analysis. Routine checks catch nonobvious contaminants early, especially organics that can sneak through open crystallization or drying steps.

    Feedback from pharma and R&D customers put pressure on us to go beyond single-lot documentation. Batch records stretch back years, and archived samples from almost every production date let us trace problems back with clarity. Our warehouse staff understands the checks, not just the paper trail, because small mistakes in packing or labeling cost time and trust. Chemistry doesn’t always forgive small errors, so our crew talks directly with end-users to tweak QC or logistics where bottlenecks crop up. This direct feedback shapes both how we produce now and what changes in scale or process we try for future batches.

    Stories From Our Customers’ Projects

    The most interesting developments with 2-amino-6-methoxybenzothiazole often kick off with a novel pathway or an unexpected yield improvement. One small-lot customer managed to boost coupling efficiency for an indole-thiazole combination after switching from a less pure, generic import to our refined process grade material. They reported not just yield, but much cleaner product by LC-MS, cutting several hours from their column purification. Our tech team had flagged minor byproducts in the generic samples prior to their switch, and pointed to the key difference in both residual moisture and trace byproducts.

    A dye manufacturer highlighted the color intensity stability in their product after switching from the methyl variant to the methoxy. They traced a longer shelf life and reduced fading in textile applications to this choice, as the methoxy group lowered both volatility and unwanted oxidation under ambient exposure. Stories like these drive us; good chemistry at the plant turns straight into smoother operations for folks in the field, which brings more repeat business than any one-off sale ever could.

    Ongoing Improvement and Working Directly With Users

    We always keep an open channel for feedback, since the details that matter most seldom show up on a spreadsheet. Several researchers and chemists have pointed to issues with handling high-purity grades, especially caking from poor ambient storage or minor solvent retentions. Our R&D wing spent a season trialing subtle tweaks to crystallization temperature and drying cycle, which turned out to sharply reduce agglomeration on standing. Every new concern — whether from a packaging shortfall, a rogue impurity spike, or even an unexpected regulatory ask — moves our process forward.

    Our customers have flagged regulatory or documentation hurdles tied to traceability, especially for pharmaceutical or agrochemical applications. We track every ingredient upstream and keep batch traceability records on hand. This readiness speeds up certification and secondary documentation when projects pivot from lab-scale to pilot or registration batches. We offer guidance, not just paperwork, for clients who reach out full of technical questions or facing tight agency windows.

    Reliability: More Than the Sum of the Certificate

    In an age where chemicals often pass through many hands before reaching the lab bench or reactor vessel, producing high-purity, consistent 2-amino-6-methoxybenzothiazole from raw starting materials sets us apart. Each kilo bears the weight of upstream control and the small improvements learned from years of direct customer interaction. Unlike a trader, we know exactly what went into every batch, and have handled enough complaints to see pitfalls coming.

    Across every production run, our crew focuses on minimizing variation. That has real stakes — minute shifts in impurity profile or solubility play out as real costs in failed reactions, lost time, and unexpected troubleshooting downstream. Some contracts rise or fall on speed to market, so minimizing downtime through consistent chemical behavior is not just marketing. Customers trust our track record because we have handled their re-orders, their urgent requests, and their process feedback directly, without layers of middlemen or lost context.

    Packaging and Logistics That Add Value

    Handling and shipping don’t always get headline attention in this industry, but we see the real headaches caused by poor packing, unclear labeling, or careless sealing. With 2-amino-6-methoxybenzothiazole, slight uptake of water or physical compaction can spell trouble. Over the years, we settled on moisture-vapor barriers and double-bagging inside heavy HDPE. Each carton carries both internal and external seals, labeled by hand, so the crew at the user’s site can check for tampering fast.

    For some projects, we customize packing lots to match use cycles or storage needs. Large users working in continuous reactors ask for split packaging, cutting down inadvertent exposure to air. We even run accelerated aging studies now and again, holding stock under worst-case humidity, so long supply chains don’t spell disaster. Our warehouse team shares data about these studies with customers looking to keep stocks on hand for long regulatory reviews.

    Adaptable Production For Evolving Needs

    Demand for 2-amino-6-methoxybenzothiazole shifts as industries move. We scale output based on upstream supplier stability and end-market signals. If a customer needs a tweak to the final product — say, a tighter particle size range or special blending requirements — our plant team sets up parallel batches and runs live pilot trials. This flexible approach meets both urgent pilot requests and routine production without delays.

    Maintaining this level of adaptability means investment. We refresh reactors and purification columns as new QC challenges crop up. Our operators get cross-trained so that bottlenecks don’t develop at a single step — a fact that’s saved whole campaigns when supply disruptions hit or staff turnover looms. Growth in biotech and green chemistry segments means new applications emerge for thiazole derivatives, so we stay alert to changing regulatory and performance demands.

    Customers pushing into scale-up or new research paths reach out for joint troubleshooting. Our chemists dive into their project specifics and share insights into reaction conditions, handling, and purification. The ability to provide technical guidance on short notice — not just to ship standard product but to help optimize its use — proves as valuable as consistent purity.

    The Value of Long-Term Direct Supply

    Unlike a reseller, we keep detailed histories on each production effort and each major repeat customer. Whether a project repeats every quarter or turns up once a year, we’re ready with archived data, reserve stock, and an understanding of specific use needs. This minimizes hassle for both routine and surprise orders. Genuine partnership beats any race to the lowest price; we’ve seen time and again that steady, reliable supply underpins product launches, research campaigns, and plant expansions.

    The landscape keeps shifting, but our approach to producing and supplying 2-amino-6-methoxybenzothiazole remains grounded. Every year brings new tweaks, new analytical tools, and new customer challenges. Even small process changes can improve consistency in yield, shelf life, or user satisfaction. The real difference comes not just from molecular structure, but from a commitment to craft, transparency, and two-way communication with the people actually using what we make.

    Listening and Responding: Focus on Shared Success

    Simple supply solutions rarely last. We invest in stability and trust, with an eye on all the ways 2-amino-6-methoxybenzothiazole isn’t just another order in our books but a key building block for discovery, innovation, and output that counts. Each project using our product pays forward — tighter controls, better feedback loops, and direct communication make the next delivery smoother and the next trial more successful.

    Working at the intersection of manufacturing, application, and practical chemistry, we hear not just the technical questions but the stories of trial and error from people in the field. Every improvement becomes part of our ongoing approach. When a product makes this kind of impact across industries, it becomes more than just a specialty chemical — it becomes part of a long chain of results, all the way from reactor vessel to successful project.