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Ethyl 2-Amino-5-Iodobenzoate

    • Product Name Ethyl 2-Amino-5-Iodobenzoate
    • Alias Ethyl 5-Iodoanthranilate
    • Einecs 603-985-9
    • 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

    887605

    Chemical Name Ethyl 2-Amino-5-Iodobenzoate
    Cas Number 31221-65-9
    Molecular Formula C9H10INO2
    Molecular Weight 291.09 g/mol
    Appearance Light yellow to brown solid
    Melting Point 89-93°C
    Purity Typically ≥ 98%
    Solubility Soluble in organic solvents like DMSO, ethanol
    Storage Conditions Store at room temperature, away from light and moisture
    Synonyms 2-Amino-5-Iodobenzoic acid ethyl ester
    Smiles CCOC(=O)C1=CC(=CC=C1N)I
    Inchi InChI=1S/C9H10INO2/c1-2-13-9(12)7-5-6(10)3-4-8(7)11/h3-5H,2,11H2,1H3

    As an accredited Ethyl 2-Amino-5-Iodobenzoate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The product arrives in a sealed 25g amber glass bottle, labeled "Ethyl 2-Amino-5-Iodobenzoate," with hazard symbols and handling guidelines.
    Shipping Ethyl 2-Amino-5-Iodobenzoate should be shipped in tightly sealed containers, protected from light and moisture. It must be packed according to chemical transport regulations, with appropriate hazard labeling. During transit, temperature should be controlled and handling minimized to prevent damage or degradation. Safety Data Sheet (SDS) must accompany each shipment.
    Storage Ethyl 2-Amino-5-Iodobenzoate should be stored in a tightly sealed container, away from light, moisture, and incompatible substances such as strong oxidizers. Keep it in a cool, dry, and well-ventilated area, ideally in a chemical storage cabinet. Ensure proper labeling and restrict access to trained personnel. Follow all relevant safety guidelines for storage of hazardous chemicals.
    Application of Ethyl 2-Amino-5-Iodobenzoate

    Applications of Ethyl 2-Amino-5-Iodobenzoate in Industrial Manufacturing

    Ethyl 2-Amino-5-Iodobenzoate is a specialized intermediate used in demanding synthesis routes across pharmaceutical, agrochemical, and advanced materials industries. As the original manufacturer, we ensure traceable quality and integration into high-value downstream production, supporting precise compliance, technical requirements, and scalable output across key segments.

    1. Pharmaceutical Active Pharmaceutical Ingredient (API) Synthesis

    This compound serves as a controlled synthetic intermediate in targeted API synthesis, especially for iodinated heterocyclic drugs. Leading pharmaceutical companies use it to introduce the iodine atom in complex molecules through established coupling, cyclization, or amination processes. Our product ensures strict traceability and batch-to-batch consistency crucial for GMP protocols and multi-stage reaction schemes.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP General Chapters & Monographs (as intermediate)
    • EU EudraLex Volume 4, Part II
    • US FDA 21 CFR Part 211 for finished product traceability

    Typical usage ratio

    • 5%–30% molar equivalent in precursor coupling; adjusted by synthetic route requirements and scale-up validation

    Downstream process integration

    • Added after initial condensation, during the key halogen exchange step or amide cyclization

    Final product types

    • Thyroid imaging contrast APIs (iodinated benzoic acid derivatives)
    • Antiviral or anticancer heterocycles
    • Intermediates for further substitution in generic or custom APIs

    2. Agrochemical Intermediate Manufacturing

    In the agrochemical industry, formulators utilize this iodinated derivative as a critical building block for constructing efficient pesticide or herbicide precursors. It introduces functional groups into the aromatic ring during controlled reactions to improve efficacy and environmental behavior in final field formulations.

    Industry compliance standards

    • FAO/WHO Specifications for Agricultural Pesticides
    • ISO 9001:2015 Quality Management for raw materials
    • REACH Registration (EC No. 1907/2006) for chemical safety
    • China GB/T 1604 Agrochemical Raw Material Standards

    Typical usage ratio

    • 2%–15% w/w relative to total batch size, depending on target molecule synthesis steps and crop specificity

    Downstream process integration

    • Introduced during aromatic halogen substitution or condensation, often as the second or third step in building complex pesticide scaffolds

    Final product types

    • Precursor compounds for selective herbicides
    • Building blocks for systemic fungicides
    • Auxiliary inputs for new-generation insecticide research pipelines

    3. Specialty Dye and Pigment Synthesis

    Industry formulators employ this compound as a halogen donor in custom dye synthesis, especially for high-performance organic pigments. It enables controlled functionalization of aromatic rings for lightfast and application-resistant dye molecules used in electronics, automotive, and textile sectors, where even minor structural variants impact product stability and chromaticity.

    Industry compliance standards

    • OEKO-TEX Standard 100 (for textile dye intermediates)
    • EU REACH (Substance Safety Data and Pre-registration Dossier)
    • ISO 9001:2015 and in-process QC (colorant manufacturers)
    • GHS labeling for transport and handling

    Typical usage ratio

    • 3%–12% by weight in dyestuff precursor batches; optimized by pigment shade and solubility profiles

    Downstream process integration

    • Added to reaction vessels after base aromatic skeleton formation; enters during halogenation and subsequent azo-coupling or condensation

    Final product types

    • High-temperature-stable dyes for technical ceramics or plastics
    • Iodinated pigments for inkjet printer formulations
    • Specialty colorants for automotive polymer parts

    4. Radiolabeling and Diagnostic Contrast Agent Preparation

    Researchers and diagnostics manufacturers require this compound as a key substrate for iodination in radiolabeling, allowing the synthesis of molecular probes for SPECT/CT imaging and in vitro diagnostics. Careful structural placement of the iodine atom supports target molecule development for contrast agents that demand clear, high-contrast imaging with strict regulatory control.

    Industry compliance standards

    • US FDA 21 CFR Part 212 (Positron Emission Tomography Drug Manufacturing)
    • EU EMA guidelines for diagnostic imaging products
    • ISO 13485:2016 (Medical Devices – Quality Management)
    • U.S. Pharmacopeia, General Chapter <797> (Compounding Sterile Preparations)

    Typical usage ratio

    • 0.5%–8% molar equivalent, depending on dose requirements for each batch of radiolabeled agent or tracer

    Downstream process integration

    • Used in pre-radiolabeling synthesis, then subjected to radioisotope exchange or nucleophilic substitution in shielded synth-labs

    Final product types

    • Iodine-123 or Iodine-125 tracers for SPECT
    • Diagnostic injectable contrast agents
    • Biomolecular probes for in vitro test kits

    5. Fine Chemical Synthesis for Electronic Material Precursors

    Manufacturers in the electronics sector apply this intermediate in building block synthesis for advanced organic semiconductors and optoelectronic materials. The controlled introduction of the iodine functionality supports liquid crystal and OLED precursor routes, where stringent purity and trace heavy metal analysis drive qualification for device application.

    Industry compliance standards

    • IEC 61249-2-45:2011 (Halogen-Free Materials in PCB Manufacturing, iodine content restrictions)
    • RoHS 2011/65/EU (Restriction of Hazardous Substances)
    • ISO/TS 16949:2009 (Automotive Quality — Electronics Supply Chain)
    • ASTM D4673 (Electronic Grade Raw Material Specifications)

    Typical usage ratio

    • 0.8%–10% by mass, calculated based on target charge transfer efficiency and product yield in multistep organic synthesis

    Downstream process integration

    • Fed into high-purity reactors during the halogenation or closing step of aromatic ring functionalization for semiconductor layouts

    Final product types

    • Precursor monomers for organic light-emitting diodes (OLED)
    • Specialty intermediates for liquid crystal display (LCD) drivers
    • Building blocks for sensors and organic thin-film transistors (OTFTs)
    Free Quote

    Competitive Ethyl 2-Amino-5-Iodobenzoate prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

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    Certification & Compliance
    More Introduction

    Working With Ethyl 2-Amino-5-Iodobenzoate: An Insider’s View

    Introduction to Our Ethyl 2-Amino-5-Iodobenzoate

    Out on the production line, at the intersection of synthetic chemistry and real-world utility, Ethyl 2-Amino-5-Iodobenzoate comes to life in ways that can’t be appreciated from just a string of chemical names. This compound—known among chemists for its role in building more complex molecules—demonstrates the kind of reliable purity and performance that only direct handling in a manufacturing environment reveals. Coming in as a pale off-white solid, this product represents years of factory know-how and practical refinement. Iodinated benzoic esters like this one provide the foundation for several advanced applications, so quality at each batch is not a mere aspiration but the expectation.

    Our Take on Specifications and Handling

    You can always find datasheets online describing melting points or solubility, but there’s more to it. Over many campaigns, we’ve learned that trace impurities—unnoticeable on a quick TLC—disrupt downstream reactions in ways no spreadsheet ever predicts. We set a practical benchmark for our product each run, and we stick to it: high assay, minimal moisture, and low residual solvents. Our Ethyl 2-Amino-5-Iodobenzoate comes primarily with an assay above 98%, gathered from in-house HPLC and NMR. Each step of purification—extraction, crystallization, and careful drying—prevents side-product formation and guarantees color that meets the most demanding physical standards.

    We don’t outsource these steps. Each roll of raw material and drum of solvent moves through our own factories, checked twice for conformity. Operators talk about the "smell of clean" when a batch comes off right, because off-notes signal leftover contaminants. Residual iodine species or unreacted starting material will knock down both the yield and the confidence in the final application. We’ve narrowed our final product to less than 0.5% volatiles by weight, confirmed by GC on every lot. That matters, especially in synthesis work reliant on reliability.

    Harnessing 2-Amino-5-Iodobenzoate in Real Processes

    The main reasons researchers and process chemists ask for this product stem from its structure: the amino group and iodine at strategic positions on a benzene ring. These features direct further reactivity much better than an unsubstituted ester. In our experience supporting pharmaceutical and material synthesis, the presence of iodine at the ortho-para position to amino and ester groups opens doors to Sonogashira and Suzuki couplings, as well as Sandmeyer transformations. People in the know select our product not because of a catalog description but because of proven batch performance. The purity and consistency pay dividends when fewer byproducts mean shorter purification times for the next step.

    We’ve seen the use cases: starting material for heterocycle synthesis, precursor for pharmaceutical intermediates, and sometimes even for advanced agrochemical products. At scale, differences in melting behavior make all the difference during upscaling. Fractionally higher melting points warn you if a side reaction has occurred or if moisture hasn’t been driven off completely. We control dryers tightly, and operators check not only for appearance, but also for free-flowing powder—clumping indicates a process that missed its mark.

    What Sets Us Apart From the Crowd

    Plenty of suppliers offer what they call Ethyl 2-Amino-5-Iodobenzoate. The biggest differences emerge in real-world reactions, especially during scale-up. We’ve been there, working with our partners to tweak the esterification so that the product forms cleanly, leaving little behind for waste. Cheaper grades sourced from commodity brokers often carry double-digit percentages of hydrolyzed acid or residual starting iodine, leading to headaches in purification. In the lab, small batches might be tolerable, but at scale, consistent reactivity and color make a difference in throughput and labor costs. We don’t just sample once per batch—we check at multiple steps, and every operator knows why that matters.

    Our team has repeatedly solved headaches for custom synthesis projects. One notable production run for a European API manufacturer prompted us to adjust the final crystallization step. This tiny revision shaved eight hours off filtration, dropped the batch’s moisture content by an entire percent, and pushed overall reactant conversions to near-theoretical limits. Those marginal improvements never show up in lab catalogs, but translate straight to cost savings and confidence for clients relying on each delivery.

    Perspectives on Controlling Impurities and Byproducts

    Throughout years of work in fine chemical manufacturing, certain lessons stick: impurities often spell trouble. In the case of Ethyl 2-Amino-5-Iodobenzoate, even small quantities of 2-Amino-5-Iodobenzoic acid lead directly to filter blockages and colored byproducts in downstream chemistry. To get that under control, we tightened our in-process cleaning and changed the glassware cleaning sequence between batches. GC and LC comparisons of old and new methods showed a drop in acid content, which led to improved crystallinity and better reactivity in partner laboratories.

    The most valued aspect for customers isn’t only purity by the books; it’s peace of mind that their next synthetic step won’t choke or fizzle due to some leftover impurity. Byproducts aren’t always visible in the intermediate—it takes running hundreds of kilos through the line to spot the patterns. We pass on that experience to partners, warning them when certain solvent–additive combinations trigger much higher side-product formation. Over time, these tweaks mean not only a cleaner product but also predictably higher performance in coupling reactions, one of the main draws for this compound.

    Safety, Stewardship, and Workplace Practice

    Making and handling iodinated aromatics demands a steady hand and practical sense. Over the years, we’ve constantly updated training not only for regulatory sake but to handle the quirks unique to this class of compounds. Ethyl iodides release a distinctive, sharp smell; even an inexperienced operator spots an incomplete wash or venting ducking wrong. Our facilities incorporate high-flow hoods, and we run constant air monitoring during the key esterification stages. Spill procedures have been drilled and improved after lessons learned—once, a pressure bump knocked loose a vent line, and our protocols caught and resolved it within minutes, averting both safety and contamination risks.

    Disposal and waste management also top the list for responsible manufacturers. Waste iodine gets collected and processed in-house, minimizing environmental liabilities and meeting our own stewardship values. In practice, this means every drum of spent solvent and collected filtrate gets tracked, analyzed, and neutralized as dictated by both local legislation and internal standards. That attention keeps our operation sustainable and trustable for future partners.

    Real Differences Compared to Handled Competitor Products

    Any lab can show numbers on purity and melting point, but few back up those numbers with delivery at scale. Our Ethyl 2-Amino-5-Iodobenzoate doesn’t just match the highest technical grade—it consistently exceeds it in performance, repeatability, and transparency. We’ve compared side-by-side runs for contract customers who brought in raw materials from various origin points. The results told their own story: less off-coloring, steadier melting behavior, and tighter assay ranges in our material. That not only meant less rework downstream but also easier regulatory and quality compliance for clients.

    We stand behind every batch; problems, rare as they might be, get managed with hands-on service. One recent trial in medicinal chemistry flagged a trace impurity in another source’s lot; resolving it required months of trouble-shooting and back-and-forth. Our own lot, run through the same synthetic pathway, cleared every hurdle and saved valuable time. A lot of manufacturers like to tout certificates of analysis, but the true test only comes in a plant environment handling multiple tons of product over time.

    Insights for Scale-Up and Integration

    Juggling all the variables—reagent compatibility, solubility in different media, and bulk handling—consumes huge attention during industrial projects. We share not just our product, but also practical advice for customers scaling from the gram to the ton. Our teams consult with clients tackling problems involving solubility, filtration, and controlled addition. In some cases, switching a crystallization solvent or adjusting pH mid-reaction made the difference between a headache-filled day and a smooth campaign.

    Modern process integration also raises new challenges as custom ingredient needs grow. Some companies chase lower cost sources, but we’ve seen supply interruptions, inconsistent assay, and increased troubleshooting costs eat up perceived savings. By keeping our own control over raw materials and quality checkpoints, we’ve avoided these stops and starts. Our customers don’t waste time verifying batch-to-batch variance or chasing down causes of failed reactions; they know each drum meets their most critical criteria, proven over thousands of kilos shipped each year.

    Supporting Research and Custom Applications

    Our Ethyl 2-Amino-5-Iodobenzoate often shows up in supporting roles for breakthrough chemical research. We’ve enjoyed seeing its use in library synthesis, nucleophilic aromatic substitution, and advanced palladium-catalyzed cross-coupling. New linker chemistry in medicinal chemistry pipelines, for example, finds this compound uniquely suited due to its reactivity profile. Customers from the academic to the industrial have leveraged our consistent supply to drive exploratory chemistry that can’t wait for multiple reorders or resourcing from unreliable pipelines.

    We work closely with researchers scaling up compound libraries, walking them through best practices for storing, dissolving, and reacting the compound. Our materials team documents key handling notes discovered over years of shipment and process support. Ethyl 2-Amino-5-Iodobenzoate, handled with care, can open doors in SAR analyses and combinatorial routes that have no replacement.

    Industry Trends and Future Challenges

    In the evolving world of fine chemicals, many compounds face increasing scrutiny due to more stringent regulatory and environmental requirements. Our team tracks updates from major agencies and customer-specific requirements, updating both our production approach and documentation. Regulatory pressures push us to constantly refine our purification protocols. We answer with upgrades on distillation, higher-efficiency solvent recovery, and tracking every feedstock to origin.

    The move toward greener chemistry affects even established products. We evaluate new catalysts, try lower-impact solvents, and invest in reagent recovery. The iodine employed here, a sometimes-limited resource, gets recycled, reducing reliance on virgin sources. That improves both supply chain stability and our environmental footprint. These changes aren’t just reactionary—they’re integrated into our future-facing strategy so customers can rely on stability, transparency, and access to innovations before regulations demand them.

    Customer Service and Long-Term Commitment

    Working from the standpoint of a real producer, we view every order as a partnership. Communication with customers doesn’t end with shipment. Feedback on performance and usability loops directly back into process improvements. If an application demands tighter particle size or different packaging, we bring in our technical team and adapt. We keep samples from previous lots and use customer feedback to monitor for long-term trends in consistency.

    We stand ready to troubleshoot or back up any claim with actual retained samples and production logs. Customer trust gets built over repeated, reliable supply—not slick brochures. Our service teams stay empowered to communicate openly about delays, improvements, or changes, so users of our Ethyl 2-Amino-5-Iodobenzoate aren’t caught off-guard by surprises that can cost valuable research or production time.

    Beyond the Product—Building Quality From Top to Bottom

    Manufacturing Ethyl 2-Amino-5-Iodobenzoate that meets demanding modern expectations takes more than clean glassware and a sharp eye. It involves end-to-end process thinking, constant feedback between lab and plant, and a responsive adjustment whenever new challenges arise. From the earliest batch we’ve produced, learning has shaped improvements. Each year, we invest in better instrumentation, updated documentation, and hands-on training for staff.

    We pride ourselves on leading with practical, repeatable quality grounded in decades of direct chemical manufacturing experience. Our Ethyl 2-Amino-5-Iodobenzoate stands as a testament—not just to our technical skills in synthesis and purification, but to a culture of openness, problem-solving, and genuine partnership with each client. Researchers, formulators, and production chemists looking for true reliability and performance will find a like-minded approach here, built from real-world demands and responsive support, batch after batch.