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2-Methoxythiazole

    • Product Name 2-Methoxythiazole
    • Alias 2-methoxy-1,3-thiazole
    • Einecs EINECS 415-990-8
    • 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

    429145

    Chemical Name 2-Methoxythiazole
    Cas Number 35144-22-0
    Molecular Formula C4H5NOS
    Molar Mass 115.15 g/mol
    Appearance Colorless to pale yellow liquid
    Boiling Point 151-152 °C
    Density 1.19 g/cm³
    Melting Point -23 °C
    Refractive Index 1.542
    Flash Point 49 °C (closed cup)
    Solubility Slightly soluble in water
    Smiles COc1ncs1

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

    Packing & Storage
    Packing 2-Methoxythiazole is supplied in a 25g amber glass bottle with a secure cap, labeled with safety and chemical information.
    Shipping 2-Methoxythiazole is shipped in tightly sealed containers under cool, well-ventilated conditions to prevent contamination and moisture absorption. Standard shipping complies with local regulations for chemical transport. Handle with care, avoiding sources of ignition. Each package is labeled with hazard information and safety instructions. Shipping generally follows UN1993 rules for flammable liquids.
    Storage 2-Methoxythiazole should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible materials such as strong oxidizing agents. Keep the container tightly closed and clearly labeled. Protect from direct sunlight and moisture. Store at room temperature and handle using appropriate personal protective equipment to avoid inhalation or skin contact.
    Application of 2-Methoxythiazole

    Applications of 2-Methoxythiazole in Industrial Manufacturing

    2-Methoxythiazole serves as a specialized chemical intermediate valued for its unique aroma profile and heterocyclic structure, finding substantial demand in high-value downstream sectors. As an experienced manufacturer, we recognize and support the distinct technological, regulatory, and process requirements for each industrial application. Below, we detail the core application scenarios, focusing on the real-world conditions, regulatory frameworks, technical integration, and commercial products in which our material is utilized.

    1. Flavors and Fragrances Compounding

    Food and fragrance producers use 2-Methoxythiazole to deliver distinct sulfurous and nutty notes in complex flavor bases, especially for roasted, meaty, and savory profiles. Our technical engagement with this sector includes careful supply tailored to meet strict organoleptic specifications, food safety assessments, and compliance with international additive approvals. Customers deploy it at calculated dosages to enhance top notes in finished goods, relying on our high-purity standards to avoid offtastes and regulatory non-compliance.

    Industry compliance standards

    • U.S. FDA 21 CFR § 172.515 (Synthetic flavoring substances)
    • European Regulation (EC) No 1334/2008 (EU list of flavorings)
    • JECFA specification Monograph 1772
    • ISO 9235 (Aromatic Natural Raw Materials—General Guidance)

    Typical usage ratio

    • 0.01 – 15 ppm in finished foods and beverages, typically under 2 ppm for regulatory and sensory thresholds; higher concentrations may be applied in fragrance blends according to aroma intensity required by the product matrix.

    Downstream process integration

    • Direct addition in flavor compound blending tanks prior to emulsification, solubilization in alcohol or propylene glycol bases for scents, or thermal dosing for Maillard reaction flavor systems.

    Final product types

    • Instant soup mixes
    • Seasonings for snack foods
    • Beverage concentrates (coffee, chocolate, malted drinks)
    • Room and air freshener bases
    • Perfume accords with nutty or roasted cues

    2. Pharmaceutical Intermediate Synthesis

    2-Methoxythiazole functions as a heterocyclic building block in multi-step syntheses for active pharmaceutical ingredients (APIs). Medicinal chemistry projects utilize this compound for constructing frameworks of candidate drugs, particularly in anti-infective and CNS research pipelines. The supply chain requires batch consistency, documentation for traceability, and adherence to cGMP protocols. Our material is thoroughly validated for process impurity profiles and suitability for medicinal chemistry campaigns.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice Guidance for Active Pharmaceutical Ingredients
    • USP–NF General Chapter <797> (if used in compounding)
    • EU GMP Annex 1 (Manufacture of Sterile Medicinal Products, for injectable drug intermediates)
    • Relevant DMF (Drug Master File) referencing or in-house specification sheets upon customer request

    Typical usage ratio

    • Stoichiometric to slight excess (1.0–1.2 equivalents), depending on downstream synthetic step requirements, with optimization through process development for scale-up campaigns.

    Downstream process integration

    • Nucleophilic substitution, cyclization, or coupling introduced during early or intermediate synthetic steps; reaction conditions typically employ DMF, DMSO, or THF under controlled temperature and humidity. Downstream purification by crystallization or preparative chromatography.

    Final product types

    • API intermediates for new molecular entities
    • Pilot-scale medicinal chemistry compounds (anti-infective scaffolds, CNS-active molecules)
    • Drug discovery screening libraries

    3. Agrochemical and Crop Protection Synthesis

    Major agrochemical producers employ 2-Methoxythiazole as a core component in the synthesis of advanced crop protection actives, such as herbicidal or fungicidal agents containing thiazole moieties. The sector requires tight control of impurity profiles, alignment with environmental safety evaluations, and full documentation for material safety data as per agricultural regulatory authorities. Custom supply aligns with both small molecule discovery and large-scale technical material production trails.

    Industry compliance standards

    • OECD Guidelines for Testing of Chemicals (Screening for ecotoxicology)
    • REACH Regulation (EC) No 1907/2006 (chemical registration, evaluation, authorization & restriction)
    • US EPA Pesticide Registration (FIFRA compliance for intermediates)
    • ISO 9001 quality management for agrochemical production sites

    Typical usage ratio

    • 1.0–1.5 mole equivalents, typically matched to downstream coupling agent stoichiometry; small-scale discovery applications may explore wider ratios for SAR optimization.

    Downstream process integration

    • Entry during the construction of the thiazole ring system in active ingredient backbones, or as a functionalization agent incorporated mid-synthesis before formulation and solid-state processing of technical materials.

    Final product types

    • Pre-formulation herbicide API candidates
    • Technical-grade fungicides
    • Seed coating chemical intermediates

    4. Specialty Chemical Intermediate for Electronic Materials

    Manufacturers involved in the production of specialty electronic materials utilize 2-Methoxythiazole to synthesize heterocyclic intermediates for advanced materials, including organic semiconductors and photoresist components. Stringent purity requirements, low metal contamination, and documented analytical profiles are essential for this segment, supporting downstream fabrication steps such as spin-coating and vapor deposition in microelectronics.

    Industry compliance standards

    • JEITA EM-3508 (Electronic Materials—General Specifications)
    • SEMI C3 (Specifications for Electronic Grade Chemicals)
    • RoHS Directive 2011/65/EU (Restriction of Hazardous Substances for electronics)
    • Customer-specific analytical and purity criteria (NMR, GC-MS, ICP-MS analysis)

    Typical usage ratio

    • Applied according to stoichiometry in the precursor synthesis stage—typical industrial-scale runs range from 0.5 to 2.0 equivalents, adjusted based on targeted electronic properties and subsequent functionalization needs.

    Downstream process integration

    • Integration during monomer or oligomer synthesis for organic electronic films; addition conducted under nitrogen or argon atmosphere with solvent exchange procedures to limit contamination and maintain dielectric standards.

    Final product types

    • Organic thin-film transistor (OTFT) materials
    • Specialty resists for photolithography
    • Semiconducting copolymers for display technologies

    5. Chemical Research and Fine Chemical Synthesis

    Research institutions and fine chemicals manufacturers value 2-Methoxythiazole for its structural utility in constructing target molecules for specialty catalogs, reference standards, and advanced organic scaffolds. The research environment emphasizes high-purity lots, detailed characterization by NMR and MS, and shipment documentation that complies with global shipping and laboratory safety standards. Researchers tailor usage for exploratory synthesis and pilot programs, benefiting from our consistent quality and analytical support.

    Industry compliance standards

    • GHS/CLP regulation (Regulation (EC) No 1272/2008, for chemical labeling)
    • ISO/IEC 17025 (Testing and calibration laboratory competence)
    • Shipping compliance under IATA/IMDG for chemical samples
    • Documented batch records and certificate of analysis (COA) requirements

    Typical usage ratio

    • Flexibly determined by synthetic design, typically in 0.1–5 mmol scale for research and 10–100 g scale for fine chemical production; ratios based on the protocol of the desired transformation or automated synthesis workflows.

    Downstream process integration

    • Used as a starting material, intermediate, or reference standard in the multi-step synthesis of novel heterocycles; incorporated at the targeted stage of building molecular diversity for research, compound screening, or analytical calibration.

    Final product types

    • Specialty building blocks for chemical supply catalogs
    • Analytical reference substances
    • Custom heterocyclic compounds for research projects
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    Certification & Compliance
    More Introduction

    Introducing 2-Methoxythiazole: Practical Benefits and Real-World Performance

    What 2-Methoxythiazole Brings to the Table

    Years of working with specialty heterocyclic compounds have shaped our current approach to 2-Methoxythiazole. To us, this compound is far more than its chemical structure. Its formula – C4H5NOS – speaks to a balance of volatility, reactivity, and stability that gives formulators flexibility they struggle to find elsewhere. In our own facilities, we control the synthesis at every step, ensuring the material meets strict standards of purity that many in the industry request for demanding projects.

    Our 2-Methoxythiazole arrives as a colorless to lightly yellow liquid under normal storage. Toxicological and olfactory properties form much of its value in modern applications. Laboratories, perfumeries, and pharmaceutical research groups often turn to 2-Methoxythiazole for its distinctive aroma, where notes of toasted bread or roasted malt add specific depth in fragrance design. In flavor chemistry, this same molecule stands out for lending authenticity to savory or baked profiles that can't be achieved by simpler sulfur compounds. Engineers focused on organic synthesis take advantage of its thiazole ring in routes where reactivity with electrophilic substituents is crucial. Every batch we produce undergoes quality checks emphasizing residual solvents, water content, and GC purity, supporting these advanced end uses.

    Specifications Rooted in Daily Production

    Our standard model for 2-Methoxythiazole follows parameters adopted after years of feedback from working chemists. We favor a minimum purity of 98%, confirmed by gas chromatography, with water content kept under 0.2%. This range provides the right balance between reactivity and shelf stability, minimizing trace byproducts that might complicate further synthesis steps. All product drums and bottles are sealed quickly after synthesis and packaged under inert gas.

    Experienced teams at our site check viscosity, refractive index, and even minute color changes, since all of these can signal process deviations. Any off-specification batch does not leave our warehouse. Distributors and direct purchasers expect a strict standard, so we document every inspection and archive reference samples for comparative tracking.

    Real-World Usage Scenarios

    On the production floor we have collaborated with flavor and fragrance houses who require kilogram-scale lots. Those projects often begin with small synthesis runs optimized for cost but ramp quickly as bulk demand grows. 2-Methoxythiazole’s robust aroma profile means formulators get more out of a smaller dosage, translating into efficiency on both cost and sensory intensity. Both micro-dosing machines and manual blending stations handle the material with ease, and the robust packaging we use withstands frequent opening and closing in laboratory or pilot plant settings.

    Pharmaceutical researchers lean on 2-Methoxythiazole while exploring new drug candidates or building heterocyclic scaffolds for active compounds. The thiazole ring system offers pathways to both new chemical entities and analogs of established medicines. In our own onsite pilot programs, we have run coupling reactions and functional group modifications using this molecule, benefiting from its relatively clean reactivity profile. Its modest polarity supports solubility across a range of organic solvents, allowing consistent phase behavior in both research and scale-up settings.

    Industrial chemists focused on fine chemicals sometimes need thiazole chemistry for patent-sensitive applications. We have hosted collaborative scale-ups under confidentiality, producing multi-kilogram quantities under controlled conditions while keeping trace impurities below the limits often required for registration batches. Our in-house analytics lab provides the stability and impurity data needed for both regulatory filings and customer validations.

    Addressing Safety and Handling Head-On

    2-Methoxythiazole carries a sulfur atom in its ring, making vapor phase exposure a point of consideration. Our people handle all filling and packaging under adequate local exhaust ventilation, minimizing risk of occupational exposure. Training programs ensure our operators recognize the sometimes sharp, pungent odor and know the correct personal protective equipment for extended tasks. We use spill containment systems and prompt air monitoring for every fill or transfer.

    For shipping, our logistics team double-checks labeling and compliance with international transport guidelines for liquids with mild toxicity and aromaticity. Every drum we prepare features detailed labels for batch and shelf life, and our documentation includes the results of purity checks, moisture analysis, and visual inspection. End-users often request these tracking details to feed into their own regulatory documentation, and we understand their importance.

    Comparing 2-Methoxythiazole to Other Products

    We manufacture several thiazole derivatives out of necessity, but direct experience has shown that not every analog can match 2-Methoxythiazole’s performance. Straight thiazole, for example, can miss the nuanced aroma profile that 2-Methoxythiazole routinely delivers. The methoxy substituent brings a sweet and roasted note, while straight thiazole leans more toward sharp, fatty, or even green notes. For perfumers and flavorists, this makes all the difference between a composition that works and one that feels hollow or cheap.

    From a synthesis standpoint, methylthiazoles and ethylthiazole find use in some applications but tend to run more volatile and less easily incorporated into viscous media. Ethylthiazole often struggles in terms of long-term shelf stability and can create issues at the blending station due to greater evaporation. Methoxythiazole handles shelf storage better, thanks to the electron-donating methoxy group’s effect on ring stability.

    In pharmaceutical and fine chemical production, chemists often face reactivity problems when using more basic thiazoles. Oxidative degradation appears more frequently, or side reactions extend purification cycles. With 2-Methoxythiazole, these issues come up less often, as long as process controls are in place. Feedback from customers in regulated industries indicates that this compound bridges the gap between high-activity substrates and inert thiazole carriers, opening doors for patent filings and commercial launches.

    Challenges and Our Solutions

    After over a decade producing heterocyclic flavor actives, we don’t underestimate the challenges inherent in 2-Methoxythiazole manufacturing. The raw material supply chain for starting amines and sulfur donors remains vulnerable to global price shifts and logistics bottlenecks. We have weathered more than one price spike by locking in long-term contracts with reputable sources who understand the lead times we face for active projects. Our team constantly monitors supplier shifts and maintains relationships directly with upstream providers rather than through brokers, reducing the risk of counterfeit or mislabeled intermediates.

    Quality control sometimes pushes us beyond routine analytics. Trace contaminants in the solvent or side-reaction products that remain below the normal detection threshold can spark off-odors in finished blends or even downstream formulation failures. Our in-house analytical chemists run spectral checks in combination with sensory assessments, using both instrument data and experienced noses to catch these small but potentially disruptive variables. Customers running proprietary blends often visit our site for joint evaluation, and our doors remain open for this direct approach.

    Regulatory compliance ranks high on every project. 2-Methoxythiazole’s unique odor and relatively low toxicity profile support its inclusion in a wide range of formulations, but emerging market regulations keep us on our toes. Our compliance specialists track evolving standards on labeling, REACH registration, and food-use certifications, acting quickly whenever a new requirement appears in our core markets. We update safety data sheets and product labels as required, making sure downstream customers are not caught off guard.

    Keeping Consistency From Batch to Batch

    Any flavor or aroma project lives or dies on consistency. Our staff know this from repeated discussions with R&D teams who cannot tolerate surprises. The process we use to make 2-Methoxythiazole begins with a standardized route we developed over years, which balances throughput and control. We log every reaction variable – temperature, pressure, catalyst charge – and analyze every intermediate for off-spec changes.

    Automation reduces operator dependency, but skilled oversight still matters at key process steps. Batch analysts sit side-by-side with production chemists in the control room during every run, so deviations get flagged early. Finished lots get a complete workup in the laboratory before release, including residual solvent checks and parallel organoleptic testing where an aroma panel compares sensory results with reference standards. Any departure from expected character means the batch gets held for further processing or blending.

    Supporting Innovation Across Fields

    Because our factory supplies both small R&D samples and industrial-scale lots, we see firsthand how 2-Methoxythiazole supports innovation at every level. Early-stage startups regularly request pilot batches for prototype launches, benefiting from our willingness to produce custom pack sizes or tweak packaging for easier storage. These projects occasionally turn into multi-ton orders after successful scale-up. More established manufacturers send technical teams to test integration in continuous processes. Our experience adapting bulk delivery methods, including custom drum and IBC filling, helps minimize waste and protect freshness on high-frequency use lines.

    Analytical reference centers and university research labs choose our 2-Methoxythiazole to calibrate equipment, validate synthetic routes, or develop entirely new classes of functionalized thiazole derivatives. We share technical notes and processing insights directly, supporting a spirit of open development. Several patents filed over the last decade cite our compound as a key intermediate, reflecting the confidence innovation-focused teams place in our consistency and transparency.

    Environmental and Supply Chain Responsibility

    Modern chemical manufacturing does not operate in a vacuum. Each year, we review our environmental impact and identify areas for improvement. By optimizing reaction yields and upgrading solvent recovery systems, our output of 2-Methoxythiazole now produces significantly less waste compared to legacy operations. Supplier audits form a regular part of our work, as we aim to trace every input back to legitimate, sustainable sources.

    We partner with hazardous waste handlers for safe removal and disposal of residual process streams, even as we invest in onsite systems to capture and neutralize most byproducts before they exit the plant. Our teams participate in annual training focused on pollution prevention and resource efficiency, which supports both incoming audits and our own sense of responsibility as direct producers. Supply chain disruptions occasionally test our systems, yet having raw material flexibility and a robust inventory buffer lets us keep customers supplied without compromising quality.

    Direct Collaboration With End Users

    Our engagement with formulators, scientists, and process engineers happens without a layer of intermediaries. The benefits of this approach show up daily in the customer-specific adjustments we make, whether tailoring packaging to unique storage spaces or scheduling urgent shipments for projects under time pressure. Since we both manufacture and deliver our own 2-Methoxythiazole, customers receive product with a clear origin, backed by traceable production records.

    Technical support extends beyond typical spec sheets. Project leaders can reach our production and analytical staff directly to troubleshoot unexpected formulation issues. In several instances, early detection of storage incompatibility or downstream processing challenges has saved customers time and costly rework. Our willingness to share process details deepens trust and supports the collaborative progress of every project.

    Why Our 2-Methoxythiazole Makes a Difference

    Producing this compound at scale every week reveals its place in modern chemical and sensory innovation. Its performance in flavor and fragrance formulations rarely goes unnoticed; customers report more authentic notes, longer-lasting impact, and fewer off-notes in finished products. Pharmaceutical and fine chemical partners gain reliable reactivity without frustrating side-chain complications or cumbersome purification requirements. This mix of sensory and chemical properties has brought us repeat inquiries and lasting business partnerships.

    Every effort at our plant, from process design to final inspection, centers on delivering 2-Methoxythiazole that meets the real requirements of working scientists and product developers. We invest the time and resources to maintain a level of consistency and safety that protects our workers, our partners, and our environment. The product that leaves our facility stands as a reflection of our commitment to quality and progress in every field that relies on this versatile compound.