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2-Ethoxycarbonylphenyl Isothiocyanate

    • Product Name 2-Ethoxycarbonylphenyl Isothiocyanate
    • Alias 2-Isothiocyanatobenzoic acid ethyl ester
    • Einecs 256-356-1
    • 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

    312912

    Cas Number 32743-30-3
    Molecular Formula C10H7NO3S
    Molecular Weight 221.23
    Appearance Yellow to orange crystalline powder
    Melting Point 52-56°C
    Purity Typically ≥98%
    Solubility Soluble in organic solvents such as dichloromethane and ethyl acetate
    Isothiocyanate Functional Group Present
    Storage Conditions Store in a cool, dry place; keep away from moisture and light
    Smiles CCOC(=O)C1=CC=CC=C1N=C=S
    Iupac Name 2-(Ethoxycarbonyl)phenyl isothiocyanate
    Synonyms 2-Isothiocyanatobenzoic acid ethyl ester

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

    Packing & Storage
    Packing Brown glass bottle, 5 grams, sealed cap, white label with black text: “2-Ethoxycarbonylphenyl Isothiocyanate, 98%, CAS# 19850-44-7, keep dry.”
    Shipping 2-Ethoxycarbonylphenyl Isothiocyanate is shipped in tightly sealed containers, typically under cool, dry conditions to prevent decomposition or moisture absorption. It is classified as a hazardous material and must be handled according to relevant regulatory guidelines, with appropriate labeling and documentation provided to ensure safe and compliant transportation.
    Storage 2-Ethoxycarbonylphenyl Isothiocyanate should be stored in a cool, dry, and well-ventilated area, away from heat sources, moisture, and direct sunlight. Keep the container tightly closed and clearly labeled. Store separately from incompatible substances such as strong acids, bases, and oxidizing agents. Use appropriate chemical storage cabinets, and ensure secondary containment to prevent accidental release or spills.
    Application of 2-Ethoxycarbonylphenyl Isothiocyanate

    Applications of 2-Ethoxycarbonylphenyl Isothiocyanate in Industrial Manufacturing

    Our advanced grade of 2-Ethoxycarbonylphenyl Isothiocyanate supports specialized downstream synthesis in industrial sectors, where molecular precision and regulatory compliance are essential for safe, repeatable production processes. The following scenarios highlight its established and effective usage in select chemical manufacturing verticals, based on recognized industry protocols and commercial practice.

    1. Pharmaceutical Active Pharmaceutical Ingredient (API) Intermediate Synthesis

    Pharmaceutical manufacturers incorporate this compound as a key isothiocyanate building block in multi-step synthesis of specific heterocyclic scaffolds and substituted aromatic drug precursors. Its reactivity enables controlled thiourea and carbamothioate formation, which are later converted into target APIs such as kinase inhibitors or sulfonylurea derivatives for advanced therapeutic research and finished formulation. Regulatory submission packages require detailed tracking of all raw material sourcing and traceability throughout the synthesis process.

    Industry compliance standards

    • Current Good Manufacturing Practice (cGMP, FDA 21 CFR Part 210/211; EMA EudraLex Volume 4)
    • International Conference on Harmonisation (ICH Q7) for API manufacturing
    • USP/NF and EP monograph references for relevant API classes
    • ISO 9001:2015 quality management system for supplier control

    Typical usage ratio

    • 0.8–1.2 molar equivalents relative to target amine or nucleophile in reaction batch; adjusted according to desired conversion yield and downstream impurity profile control

    Downstream process integration

    • Introduced during early-stage condensation or cyclization steps, followed by sequential purification (extraction/crystallization) and further functional group modification; strict in-process analytics apply at each phase

    Final product types

    • Small-molecule kinase inhibitor APIs
    • Sulfonylurea and heterocyclic drug intermediates
    • Pharmaceutical research reference standards

    2. Agrochemical Active Ingredient Intermediate Production

    Crop protection manufacturers utilize this reagent in creating thiourea and aromatic carbamothioate intermediates, essential for the development of selective herbicides and fungicides. The compound supports fine-tuned substitution patterns, which directly influence bioactivity and field persistence. Production includes full process validation and trace impurity monitoring, as per agricultural chemical registration requirements in key export markets.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products
    • OECD guidelines for testing of chemicals
    • REACH Registration (Regulation (EC) No 1907/2006) for European market
    • ISO 9001:2015 with focus on environmental and worker safety protocols

    Typical usage ratio

    • 0.5–1.0 molar equivalents, fine-tuned following downstream reaction efficiency and regulatory limits on residual raw material

    Downstream process integration

    • Dosage into nucleophilic aromatic substitution or addition reactions; further subjected to hydrolysis, alkylation, or cyclization before final isolation of active agrochemical entity

    Final product types

    • Herbicide active ingredient intermediates
    • Fungicide precursor compounds
    • Agrochemical formulation bases

    3. Dye and Pigment Intermediate Manufacturing

    Dye producers rely on this isothiocyanate to introduce thio-functional groups during synthesis of sulfur dyes and specialty pigments, which increase fixation and color fastness on fibers. The additive is specifically selected for processes targeting vivid red-to-yellow shades with enhanced light- and wash-resistance. Manufacturing execution involves scrupulous batch record-keeping and quality validation per major textile and chemical industry standards.

    Industry compliance standards

    • OEKO-TEX® Standard 100 restricted substances list
    • ZDHC (Zero Discharge of Hazardous Chemicals) Manufacturing Restricted Substances List (MRSL)
    • ISO 14001:2015 for environmental management in dye production
    • Regulation (EC) No 1223/2009 for pigments used in cosmetic coloring agents

    Typical usage ratio

    • 0.1–0.5 molar equivalents, directly proportional to desired chroma intensity, shade saturation, and substrate compatibility

    Downstream process integration

    • Used in initial dye coupling stages, followed by oxidation or condensation with chromophoric partners; subsequent salt formation and spray drying to create stable pigment dispersions

    Final product types

    • Sulfur dyes for cellulose and synthetic fibers
    • Specialty pigments for plastics and inks
    • Colorants for industrial coatings

    4. Specialty Polymer Modifier Synthesis

    Polymer producers incorporate this intermediate for introducing isothiocyanate or carbamate end-groups during molecular tailoring of advanced engineering plastics and cross-linked thermosets. The compound’s selective reactivity supports fine control over polymer structure and resulting mechanical, thermal, and chemical properties. Documentation and production adhere to industry-specific test methods for performance and regulatory criteria for safe use, especially in electronic and automotive end-uses.

    Industry compliance standards

    • UL 94 flammability requirements for plastics
    • RoHS Directive (2011/65/EU) for electrical/electronic polymers
    • ISO 10993-5 for polymers in contact with biological material
    • ASTM D638, D790 for mechanical property characterization

    Typical usage ratio

    • Less than 2% by weight relative to polymerizable monomer; typically 0.05–1.0% based on required functionalization and property target values

    Downstream process integration

    • Added during pre-polymerization or chain extension step; may involve bulk, solution, or emulsion polymerization depending on substrate and end-use; followed by extrusion or molding to set product form

    Final product types

    • Cross-linked engineering plastics
    • Modified polyurethane and polycarbonate resins
    • Specialty elastomers and coating resins

    5. Fine Chemical Intermediate Supply for Research and Diagnostics

    Diagnostics manufacturers and research reagent suppliers utilize this isothiocyanate for functionalizing fluorescent and chromogenic labeling agents required in immunoassays and molecular biology kits. Its high reactivity with amine groups enables efficient preparation of activated labels, which are then coupled to proteins or nucleic acids for assay development. Batch records include stringent analytical confirmation and compliance with chemical trace impurity limits defined for laboratory reagents and in vitro diagnostic devices.

    Industry compliance standards

    • ISO 13485:2016 for IVD and research reagent manufacture
    • CLSI guidelines for analytical reagent preparation
    • REACH compliance for distribution in the EU
    • Applicable local statutes on chemical purity and labeling

    Typical usage ratio

    • 0.9–1.1 molar equivalents in bioconjugation protocols; strict excess minimization to reduce non-specific background in sensitive assays

    Downstream process integration

    • Mixed into activated dye solution during amine coupling or conjugation; complete removal of unreacted isothiocyanate achieved by size-exclusion chromatography or diafiltration prior to quality release

    Final product types

    • Protein and antibody conjugates for ELISA kits
    • Fluorescent probe-labeled oligonucleotides
    • Chemical reference standards for in vitro diagnostics
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    Certification & Compliance
    More Introduction

    2-Ethoxycarbonylphenyl Isothiocyanate: Practical Know-How from the Manufacturer’s Perspective

    A Straightforward Approach to a Unique Building Block

    Manufacturing chemicals for demanding applications means choosing each raw material with intention. In our line of work, 2-Ethoxycarbonylphenyl Isothiocyanate stands out—not because of any sweeping trend or buzzword, but because of what it consistently delivers in the lab and the plant. Our team works with this compound every day, filling drums and kegs for specialty orders, catering mostly to pharmaceutical companies, pigment makers, and those in custom agrochemical synthesis.

    This isn't a commodity item in the way basic solvents are. Its isothiocyanate group reacts with amines and other nucleophiles, which sets it apart from more pedestrian starting materials. The ethoxycarbonyl unit on the aromatic ring brings a subtle blend of reactivity and selectivity to reactions. Experience tells us that such specific design in a molecule lets our customers build complex structures that wouldn't come together with just any isothiocyanate. For those making pharmaceutical intermediates, this can shave steps off a synthetic route, giving time back to their chemists and reducing waste in their facilities.

    Model, Specs, and Our Manufacturing Standards

    Our batches register consistently high purity thanks to a process honed over years of hands-on adjustment. Specifications usually land at over 98% purity as checked by HPLC, and GC traces come out clean, showing absence of common aromatic impurities and only faint traces of solvents. Moisture and ash content stay low, reflecting diligent filtration, drying, and packaging methods. We use sealed, inert packaging that maintains stability during shipping even across harsher climates, reducing end-user headaches over shelf life.

    Weight per drum depends on order size, with our packing lines accommodating scales from 1 kg R&D jars up to 200 kg industrial drums for bulk partners. Since the compound carries an isothiocyanate group, vigilance over air and moisture contact remains a priority, both for us and our customers. Every lot comes out of the reactor with a COA based on real lab analysis, not just a photocopy of a template.

    Real-World Performance—Not Just Paper Claims

    Some chemicals demand babying from start to finish, and others prove reliable batch after batch. Our experience with 2-Ethoxycarbonylphenyl Isothiocyanate isn’t without challenge, but overall, the molecule rewards careful handling. Properly stabilized, this material holds up in storage and under reasonable temperature swings during transport, a point validated by storage tests and customer feedback.

    What makes this isothiocyanate move off the shelf is its blend of reactivity and restraint. In processes spinning up at scale, users often comment on its willingness to provide clean, single-product reactions with less need for chromatographic scrubbing. This means fewer lost yields and a tidier workflow, something every plant manager and bench chemist can appreciate. While some rival isothiocyanates lead to messy side products or decomposition, this one’s aromatic ester group helps guide the chemistry more predictably.

    Weighing Value: A Manufacturer’s Perspective

    Every chemical manufacturer makes tough choices on where to spend time and resources. Investing in producing 2-Ethoxycarbonylphenyl Isothiocyanate wasn’t a light decision. Reliable access to high-purity phthalic anhydride derivatives and smooth-running isothiocyanation steps tip the odds of uninterrupted production in our favor. Unlike traders, we navigate raw material volatility head-on, tweaking solvent ratios, adjusting temperatures, or dialing back batch sizes to keep the process consistent.

    When buyers work directly with us, questions that might sit unanswered with a general supplier find real-world answers. Researchers often reach out about coupling efficiency, yields in their process, and compatibility with their partner reagents. Our technical staff returns those calls not with catchphrases, but with insights from running hundreds of similar reactions, including what works and where sticking points lurk. Decades of experience breed consistency and troubleshooting that bottlenecks seldom slow down.

    A major point of pride is our record of on-time deliveries, built on predictable batch routines and robust supply chains. We know delays drive up costs all down the line, so we’ve learned to maintain tight controls, forecast supply bumps, and maintain buffers. Our regular customers count on this reliability year after year.

    Comparing to Other Isothiocyanates—What Sets It Apart

    Not all isothiocyanates wear the same stripes. Some, like phenyl isothiocyanate, bring straightforward reactivity but lack the nuanced influence offered by the ethoxycarbonyl group. The introduction of the ester function alters electronic properties of the aromatic ring, tuning reactivity for downstream transformations. For process chemists, such details matter—reaction temperature, rate, and choice of solvent all shift for the better.

    In multi-step syntheses, reliability matters as much as raw performance. In trial rounds with alternative isothiocyanates, users typically report higher by-product formation, more off-odors, and unexpected side reactions under base or acid catalysis. This is less of a problem using our 2-Ethoxycarbonylphenyl Isothiocyanate. Those working toward complex urea, thiourea, or heterocycle derivatives see this as a significant edge. An isothiocyanate that doesn’t demand endless process tweaks—one that just fits into existing protocols with minor adjustment—gains a loyal following among those who value process efficiency.

    A Closer Look at Industrial Usage

    In practice, 2-Ethoxycarbonylphenyl Isothiocyanate finds its way into laboratories and pilot plants performing exploratory synthesis, but mature markets trust it in bulk. Pharmaceutical companies see value in its versatility for producing libraries of new candidates, as it takes amine coupling seriously and behaves with unexpected reliability through harsher workups. For pigment producers and agrochemical innovators, its role as a key intermediate offers both creativity and control, allowing for cleaner pigment backbones or specialized crop protection structures.

    We’ve seen R&D chemists pivot to this product when they run into choke points with other isothiocyanates—lower solubility, slower reactions, or more troublesome isolation. Colleagues developing kinase inhibitors or sulfur-containing heterocycles have commented that 2-Ethoxycarbonylphenyl Isothiocyanate lets them navigate challenging chemistry, giving routes that don’t force them to rework every upstream choice. Over time, those habits lead to more robust, less wasteful manufacturing.

    Sustainability and Handling—Learning by Doing

    As direct manufacturers, we don’t lecture about safety—we implement it. Isothiocyanates always deserve respect. Our teams wear full gear, and our storage relies on dry, cool, inert conditions. We handle paperwork and local regulations ourselves, training operators for worst-case spills and keeping emergency stock of neutralizers on site. With 2-Ethoxycarbonylphenyl Isothiocyanate, we noted early on that stable packaging maximizes shelf life and minimizes hazardous incidents. So, over several seasons, we updated our drums, rebuilt our storage bays, and invested in improved ventilation tailored for this product’s vapors.

    Customer safety depends on honestly communicated limits, not on oversold claims. This chemical doesn’t release toxic fumes under normal circumstances, but we noticed that minimizing exposure to open air keeps both smell and hydrolysis at bay. Plant operators at customer sites say this cuts down on complaints from the floor and reduces their filtration burden on spent materials.

    Continuous Improvement—Feedback Loops that Matter

    What makes this compound better in our warehouse now compared to a decade ago? Direct feedback keeps the process honest. A batch that clumps or turns color leads right back to the team for root cause, not to delay for legal reviews or PR messaging. On one occasion, a lot showed excess volatility—prompt action led to a solvent swap mid-campaign and a refined drying protocol. Another time, a customer’s reaction yield dropped—examination of both our sample and process pointed to an upstream impurity in a purchased intermediate, caught and fixed on our end for future deliveries.

    Transparency serves all parties. We routinely offer side-by-side stability data, and our staff welcomes direct questions from plant process engineers. This open pipeline allows continuous improvement, not just on the product, but on all steps from tank reactor to seal on the drum.

    Supporting R&D: Hands-On Chemistry, Not Just Theories

    Many R&D departments rely on theoretical models when scoping a new route. We bring practical context, derived from running real-world reactions on kilogram scales. This experience lets us advise whether a particular batch of 2-Ethoxycarbonylphenyl Isothiocyanate tolerates a solvent swap from toluene to acetonitrile, or if an alternative reducing agent impacts the course of functionalization. Our own pilot teams test new lot numbers with routine amine couplings to spot reactivity drifts early.

    This effort means our partners aren’t the only ones on the learning curve. We feed back every challenge we encounter—lumpy product, supply chain delays, or unexpected odor—into new batch runs. These tweaks, unglamorous as they seem, make daily life easier for others in the field. Beyond the lab, we file process reports and supply bulletins to technical contacts so future orders perform as the last ones did, or better.

    Waste, Recycling, and Minimizing Environmental Impact

    We know every batch comes with a footprint. Cleaning glassware and reactor vessels generates waste, so we’ve invested in solvent recovery and smart batch scheduling. The particular advantage of 2-Ethoxycarbonylphenyl Isothiocyanate: high reaction yields leave less by-product to treat. Routine synthesis at our plant collects off-gas for scrubbing, uses closed-loop chillers, and pulls old drums for industrial reconditioning. Over time, this approach brought down not just environmental penalties, but costs for our own operation and our customers in turn.

    Waste handling advice travels with every bulk order. We update disposal recommendations every season based on real disposal audits—practical, not just theoretical compliance with current regulations. Safety teams at our customers’ sites benefit from this focus, facing fewer headaches during waste audits and cutting downtime during plant safety reviews.

    Shipping and Storage: Practical Insights

    Shipping tricky chemicals means more than checking a box for “hazardous goods.” We learned that this product’s sensitivity to rough handling isn’t just theoretical; drums exposed to winter storms or careless stacking showed up with dented seals or altered content. After several cycles of trial and learning, our current packaging design features rugged gaskets, secondary container liners, and clear orientation labeling to help prevent transport mishaps.

    We monitor in-transit conditions for larger orders. Trackers inside select bulk shipments prove whether the shipping environment gets too hot or damp, providing real feedback for plant managers who want predictability as goods flow from dock to production line. These steps took time to iterate, but direct communication with logistics teams and customers produced steady reductions in complaints, returned batches, and ruptured seals.

    Direct Support—What Our Partners Can Expect

    Partnership means more than a one-off sale. We find the most productive relationships come from steady, open lines of communication. Many customers lean on us in the early phases of new synthesis, then return with real-world lessons for their next rounds. Our on-site technical team responds with troubleshooting based on actual runs—not just formula sheets or search engine responses.

    We listen carefully to feedback and requests, whether it’s for finer particle sizes, better labeling for internal traceability, or more robust certificates of analysis. Modifications that make daily routines simpler, like easy-to-read hazard markers or tamper-evident seals, now appear as a matter of course.

    Comparisons Drawn from Concrete Experience

    The value of one isothiocyanate over another isn’t always obvious without direct head-to-head comparison. We supply a decent volume of related aromatic isothiocyanates, so tests run side by side in the same lab environment. Routinely, 2-Ethoxycarbonylphenyl Isothiocyanate gives sharper NMR signals in final products, fewer high-boiling residues, and improved filterability following typical quench protocols. Organic residues rinse clean with standard solvents, reducing downtime and solvent cost over a quarter’s production run.

    Switching from other isothiocyanates typically means fewer pH adjustment steps mid-process and a cleaner organoleptic profile, reducing bother for those routinely exposed during weighing and mixing. This outcome may not leap off the purchase order, but it shows up in lower overtime and fewer operator complaints, a result seasoned teams notice and appreciate.

    Concluding Observations—What Real Users Say

    Observations from the field illustrate value better than slogans. During a recent plant visit, a process engineer mentioned their yields from a multi-step scale-up increased after switching to our 2-Ethoxycarbonylphenyl Isothiocyanate source. These are technicians and chemists, not marketers. Their reactions highlight the core points we’ve learned as manufacturers—predictable performance, straightforward storage, and clear handling instructions make the difference between a routine batch and a troubleshooting headache.

    We keep our focus fixed on what matters to our customers: clear, consistent, no-nonsense supply of dependable materials. Each barrel that leaves our plant reflects long practice, shared feedback, and a running dialogue with those doing the work on the other end. 2-Ethoxycarbonylphenyl Isothiocyanate isn’t a headline-grabber, but it remains a reliable tool for innovation—one whose reputation grows one customer experience at a time.