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2-Amino-Benzothiazol-6-ol

    • Product Name 2-Amino-Benzothiazol-6-ol
    • Alias 6-Hydroxy-2-aminobenzothiazole
    • Einecs 298-703-8
    • 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

    738193

    Chemical Name 2-Amino-Benzothiazol-6-ol
    Molecular Formula C7H6N2OS
    Molecular Weight 166.20 g/mol
    Cas Number 1200-21-5
    Appearance Pale yellow to brown powder
    Melting Point 288-292 °C
    Boiling Point Decomposes before boiling
    Solubility In Water Slightly soluble
    Purity Typically ≥98%
    Synonyms 6-Hydroxy-2-aminobenzothiazole
    Storage Conditions Store at room temperature, keep container tightly closed
    Smiles c1cc2nc(sc2cc1O)N
    Inchi InChI=1S/C7H6N2OS/c8-7-9-5-2-1-4(10)3-6(5)11-7/h1-3,10H,(H2,8,9)

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

    Packing & Storage
    Packing The chemical `2-Amino-Benzothiazol-6-ol` is packaged in a sealed 25g amber glass bottle with a secure screw cap.
    Shipping 2-Amino-Benzothiazol-6-ol is shipped in tightly sealed containers, protected from moisture and light. It is transported under ambient conditions following standard safety regulations for laboratory chemicals. Labeling ensures proper identification and hazard communication. Appropriate documentation and material safety data sheets accompany the shipment for safe handling and compliance with regulatory guidelines.
    Storage 2-Amino-Benzothiazol-6-ol should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from incompatible substances such as strong oxidizers and acids. Protect from moisture and direct sunlight. Store at room temperature and handle using appropriate personal protective equipment to avoid inhalation, ingestion, and skin contact. Ensure suitable labeling and regular inspection.
    Application of 2-Amino-Benzothiazol-6-ol

    Applications of 2-Amino-Benzothiazol-6-ol in Industrial Manufacturing

    2-Amino-Benzothiazol-6-ol plays a critical role in a range of downstream industrial and specialty chemical sectors due to its functional moieties and compatibility with advanced synthesis. As a manufacturer, we supply industrial-grade 2-Amino-Benzothiazol-6-ol to clients with stringent technical documentation and traceability for integration into core processes. Below we outline well-established, compliant application fields spanning chemical synthesis, formulation, process parameters, and end-use product development.

    1. Pharmaceutical Intermediate for Antimicrobial Agent Synthesis

    Our material finds direct use as a key intermediate in the multi-stage synthesis of targeted antimicrobial agents owing to its benzothiazole scaffold. Downstream manufacturers leverage its position for selective modifications, ensuring the integrity of active pharmaceutical ingredient (API) frameworks while meeting compliance for trace impurity levels, particularly in regulated drug substance routes. Batch protocols demand strict input quality for reproducibility and regulatory submission files.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice (GMP) for APIs
    • European Pharmacopoeia (Ph.Eur.) Monographs
    • US FDA 21 CFR Part 210/211 for finished pharmaceuticals
    • REACH registration for intermediate handling

    Typical usage ratio

    • 5-12% relative to total reaction mass of key step, adjusted based on side-chain elongation or substitution; process chemists determine equivalency for impurity control and conversion yield targets.

    Downstream process integration

    • Introduced at Stage II or III of batchwise synthesis under nitrogen; typically follows initial condensation or halogenation steps—careful monitoring of reaction time and temperature crucial for selectivity.

    Final product types

    • Active pharmaceutical ingredients (APIs) for topical antimicrobial creams
    • Systemic antibacterial finished dosage forms
    • Pharmaceutical raw materials for veterinary medicine

    2. Fluorescent Dye Intermediate in Analytical Reagents

    Extensively used by specialty dye manufacturers, 2-Amino-Benzothiazol-6-ol forms part of advanced heterocyclic dye molecules for biological staining and analytical marker systems. It provides electron-donor and acceptor behavior, enhancing fluorescence properties. Downstream processes depend on predictable purity and batch coloring strength in formulation for regulated diagnostic markets.

    Industry compliance standards

    • ISO 9001-certified Quality Management Systems for specialty dyes
    • RoHS (Restriction of Hazardous Substances Directive, EU)
    • ISO 13485 for medical device reagents when used in diagnostic kits
    • REACH compliance and MSDS records for labelling

    Typical usage ratio

    • 0.8-2.5% in dye synthesis reaction mixtures; ratio varies with desired fluorescence shift, target conjugation efficiency, and process scale-up from analytical lab to bulk production.

    Downstream process integration

    • Incorporated during initial aromatic coupling with sulfonating or halogenating compounds, with direct monitoring for fluorescence intensity during purification; followed by isolation, drying, and micronization as an intermediate.

    Final product types

    • Fluorescent biological stains for microscopy
    • Diagnostic marker dyes for in vitro assays
    • Flow cytometry reagents

    3. Corrosion Inhibitor Additive in Metalworking Fluids

    Downstream industrial lubricants and metalworking fluid formulators employ this compound as a corrosion inhibitor because of its reactive heteroatom structure, enabling strong adsorption onto ferrous substrates. Our quality traceability is important to ensure additive consistency, enabling producers to meet material compatibility and HSE requirements for automotive and machinery final assemblies.

    Industry compliance standards

    • ISO 6743-13 (Metalworking fluids—Classification and specifications)
    • ASTM D4627 (Corrosion inhibiting grease test method)
    • EU CLP Regulation (Regulation (EC) No 1272/2008) for hazardous mixtures
    • Global Automotive Declarable Substance List (GADSL)

    Typical usage ratio

    • 0.1-0.4% by weight in fully formulated metalworking concentrate; precise dosage tailored by downstream QC to balance corrosion resistance with foaming and residue minimization in machining environments.

    Downstream process integration

    • Dosed during emulsification stage in fluid blending, after secondary antiwear and anti-foam agents; monitored via salt spray and immersion test racks before packaging for distribution to OEMs.

    Final product types

    • Water-miscible metalworking concentrates
    • Industrial cutting and grinding fluids
    • Corrosion inhibitor “package” additives for lubricants

    4. Polymer Stabilizer Component in Specialty Engineering Plastics

    Advanced polymers benefit from intrinsic oxidative stability by incorporating this ingredient as a functional stabilizer. Engineering plastic producers employ it for particular polyamide and polyester systems, allowing for improved color retention and extended service life in technical molded parts. The stabilizing effect must comply with industry regulations pertaining to additive leaching and mechanical impact under real use conditions.

    Industry compliance standards

    • UL 94 (Flammability Standard for Plastic Materials)
    • ISO 11357-6 (Thermal analysis of polymers)
    • ASTM D638 (Tensile Properties of Plastics)
    • REACH and local polymer additive regulations for packaging materials

    Typical usage ratio

    • 0.2-0.6% based on resin mass, adjusted depending on target oxidative stability and end product exposure to UV or thermal load; precise level determined by melt flow index and yellowing resistance.

    Downstream process integration

    • Added during extrusion or compounding with base resin pellets; thoroughly mixed under nitrogen atmosphere to avoid premature degradation, followed by granulation and pelletizing.

    Final product types

    • Technical polyamide injection parts (automotive, electrical housings)
    • Specialty polyester films for electronic components
    • Fiber-reinforced composites for industrial applications
    Free Quote

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    Certification & Compliance
    More Introduction

    Understanding 2-Amino-Benzothiazol-6-ol: Insights from the Manufacturing Perspective

    Introduction to 2-Amino-Benzothiazol-6-ol by Direct Synthesis

    As a chemical manufacturer with decades in the field, we know a compound’s real value comes from consistent quality, true purity, and open communication about differences that matter in actual work. 2-Amino-Benzothiazol-6-ol, classified under CAS number 114772-54-2, emerges out of years of careful development and repeated synthesis. Our production applies robust controls to ensure the integrity of its molecular structure, keeping impurities below the limits that disrupt laboratory or industrial processes. Batch after batch, we monitor for the precise balance between the amino group and phenolic hydroxyl so it supports research and application instead of standing in the way.

    Purity and Consistency: The Details that Matter on the Floor

    No chemist wants surprises in the drum, bottle, or bag. Our plant delivers 2-Amino-Benzothiazol-6-ol in refined batches, typically with an assay consistently above 99%. This sort of purity does not happen by accident. Lax purification procedures can push unnoticed impurities above one percent, disrupting yield improvements and catalyst selection downstream. We analyze our final product by HPLC and melting point confirmation, cross-checking using UV-Vis for trace byproducts. Our lot records are open for review because partners in pharmaceuticals and specialty materials expect true transparency, not vague guarantees.

    Physical Properties and Handling: Designed for Real-World Use

    2-Amino-Benzothiazol-6-ol crystallizes to an off-white to pale yellow powder, with low moisture absorption that avoids the usual caking or clumping seen with related analogs. The melting point typically falls near 230 °C, offering clear indicators for identity during in-house QC processes. We keep focus on minimizing dust during transfer; the median particle size is controlled so small-scale chemists and pilot plants get the right pour each time without unpredictable losses.

    Common Applications: Synthesis, Intermediates, and More

    Colleagues across pharmaceutical R&D, fine chemistry, and advanced materials seek out 2-Amino-Benzothiazol-6-ol for its role as a trusted intermediate. Its structure enables substituted derivatives for kinase inhibitor research, benzothiazole-based photographic chemicals, and even as a precursor for some fluorescent dyes. Medicinal chemists use it to build combinatorial libraries that leverage the nitrogen at the two-position and the phenolic oxygen at the six-position. The reactivity of those functional groups allows for straightforward derivatization, facilitating coupling with acyl chlorides, halides, or heterocyclic rings. Some customers use it to build thiazole-based scaffolds that end up in agrochemicals or specialty resins. Our team answers technical questions about solvent compatibility, byproduct avoidance, and the best pathway for downstream transformations.

    What Sets This Compound Apart from Similar Offerings

    The differences between 2-Amino-Benzothiazol-6-ol and other benzothiazole derivatives shape its appeal to working chemists. Many similar compounds, like plain benzothiazole, miss functional groups that support direct coupling or ring transformations. Others, such as 2-Aminobenzothiazole without the phenol group or its hydroxy-substituted counterparts lacking an amino group, fall short when researchers need sites for dual modification. Our version’s precise substitution pattern provides two complementary reactive sites aligned for selective protection or cross-coupling, useful in everything from nucleophilic substitution to Suzuki or Buchwald-Hartwig reactions.

    Care matters in manufacturing. Cheaper, less carefully controlled products often show up with traces of polysubstituted benzothiazoles or isomeric impurities. These wreck reactions, create false positives in analytical runs, or drop final yields. We work to prevent these scenarios since every unreliable intermediate wastes time and resources for our partners.

    Quality Control: Human Judgment and Proven Protocols

    We have learned over years that the best results come from trained eyes as well as solid testing procedures. Raw materials undergo strict ID, suppliers must prove reliable supply of ortho-aminophenol and sulfur sources, and each batch’s process log gets double-checked before release. We maintain a full COA with spectral scan attachments for reference. Our technical team encourages direct feedback from customers who notice unusual melting point ranges, unexplained coloration, or issues with dispersibility.

    Supply Chain Stability and Origin Transparency

    Supply interruption slows innovation. We keep both schedule and transparency by controlling our raw materials and core steps inside our own plant, not outsourcing critical stages. We have seen wild price swings when companies chase the lowest-cost tolling partner, only to struggle when key intermediates vanish or product quality turns erratic. By keeping production under one roof, we avoid forced substitutions and keep a reliable log of every production detail. Our team’s pride in the stability lets us prepare batches for both immediate and long-term projects, whether the need is a kilogram or a metric ton.

    Environmental Stewardship and Worker Safety

    Chemical professionalism stands on avoiding careless releases and unsafe work practice. Our plant meets modern European and domestic standards on containment and emissions, with solvent recovery and closed-loop filtration during synthesis. 2-Amino-Benzothiazol-6-ol’s synthesis can create sulfur and aromatic byproducts, so we trap and treat waste to avoid neighborhood complaints or regulatory risk. Every shift, our crews wear the right PPE and have real training on how to handle this intermediate and avoid dermal or airborne exposure. We regularly update procedures when regulations shift or new information emerges.

    Customer-Led Improvements: Responding to New Research

    As new projects emerge, research partners often ask for tweaks that are invisible in basic catalogs. University groups and pharma R&D teams have asked us to push purity down to below 0.2% unrelated aromatic content, or to check for absence of ultratrace metals for sensitive catalyst work. We collaborate on pre-grinding, custom packaging to minimize exposure, or verifying specific volatility characteristics when end-use applications expand. Our development group knows these aren’t just one-off requests but signals that real needs in the research community keep changing.

    Packaging, Storage, and Ease of Use

    2-Amino-Benzothiazol-6-ol holds up well to standard storage conditions without rapid degradation. To save end-users time and avoid double handling, we package in multiple vessel types with thorough inert liners for long-term storage. Moistureless glass bottles serve labs that use milligram to gram quantities, while larger lots go into drums suited for facilities that run 24-hour cycles. Every package comes with clear batch tracking. By listening to feedback from repeat clients, we scaled back oversized packaging and dust-prone liner types that create headaches in glove boxes or automated dispensers.

    Beyond the Catalog: Supporting Product Customization

    Every now and again, a customer seeks more than standard stock material. Custom requests for different particle sizes, special forms, or advanced documentation lead our development group to work with process engineers and analysts. We adapt our crystallization or drying stages to fit the end need, answering questions about hygroscopicity, reactivity under light, or batch-to-batch color. Such adjustments arise because chemists at the bench need details that actually support their workflows—not just generic catalog copy.

    Comparing 2-Amino-Benzothiazol-6-ol to Similar Compounds in the Market

    A good synthesis outcome starts with confident input. The subdivision between benzothiazoles with single-point substitutions and those with multiple functional groups is not just academic. The 6-hydroxy, 2-amino substitution enables transformations not possible with monoacetyl or basic phenol derivatives, yielding ligands or conjugates favored in advanced pharma applications. In direct comparison, other benzothiazol-6-ol derivatives lacking an amino group cannot participate in direct amidation or related C-N bond forming steps without multi-stage protection and deprotection. This dual reactivity saves both time and waste for chemists designing selective building blocks or testing new reaction types.

    Feedback from our long-term partners reinforces this. In applications involving dye precursors and bioactive molecules, single impurity spikes—even at sub-percent levels—can either block new analytical standards or create ghost peaks in critical LC runs. Avoiding unnecessary isomer content translates into actual cost-saving over routine purification or unnecessary troubleshooting.

    The Value of Direct Manufacturer Support

    Working with a direct producer, as opposed to a generic supplier or repacking trader, means every lot comes with full backstory and guaranteed compliance. We keep answers close at hand about the source and verification of starting materials, so users won’t be left guessing when they investigate trace elements or origins for regulatory review. Our documents show more than just basic properties; we provide concrete IR, NMR, and batch-specific test data, and remain available for supporting questions even a year after purchase. Decades of manufacturing have ingrained the lesson that hands-on answers speed up breakthroughs for everyone involved.

    Supporting Emerging Technologies and Next-Phase Applications

    Shift in research focus keeps demanding more from every intermediate. Groups in photoelectronics and optoelectronic material synthesis recently approached us, drawn by the reactivity of the 6-hydroxy group for anchor points in organic semiconductor candidates. Advanced agrochemical discovery comments on the compound’s flexibility as a core for bioisosteric replacements or unique salt forms. We constantly trial new crystallization and grinding techniques for pilot lots so that new industries aren't held back by sourcing delays or bottlenecks in niche reagents. This is all because even minor changes in impurity or form can alter device performance, biological activity, or next-stage cost calculations.

    Ongoing Investment in People, Process, and Plant

    Real reliability starts with real staff. Our operators learn the compound’s critical points during both day and night shifts, watching for pH drifts and off-spec color or crystallinity. Our engineers audit reactor and distillation train performance after each extended run, not just at the sign of trouble. We replace filters, check containment seals, and cross-train teams so the structure and consistency of 2-Amino-Benzothiazol-6-ol never rest on one person’s memory. Years of improving our process have cut down waste, increased yields, and reduced time from order to shipment for both standard and custom lots.

    Contributing to the Broader Scientific Community

    We make our findings available through technical bulletins, explaining details about extraction, dosing, or critical transformation outcomes observed by our quality or application science teams. In-house trials regularly test new applications in photophysical measurements or expanded derivatization, and we share results with registered partners and collaborative projects. This culture builds longer-term partnerships because our customers see us as contributors—not just deliverers of raw materials.

    The Future of 2-Amino-Benzothiazol-6-ol: Staying Ahead of the Curve

    We know demand for advanced intermediates is never static. Next-generation targets, stricter regulatory scrutiny, and the drive toward more sustainable chemistry keep us focused on adaptation. We’re investigating alternative green solvents for both synthesis and cleaning stages, and trialing methods to further cut down trace halogenated waste. Our lab teams remain invested in pilot studies for structurally related compounds because today’s side investigation sometimes leads to tomorrow’s mainstay product. 

    In these ways, our direct experience with 2-Amino-Benzothiazol-6-ol not only provides immediate support to chemists at all stages, but also helps set standards for the molecules that will shape science and manufacturing next. Direct engagement, process transparency, and ongoing investment in real technical solutions support every kilogram, gram, or milligram that leaves our site. Everyone involved—from operators to application chemists—knows each bottle or drum is more than just a commodity, but a building block for real advances.