Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
Follow us:

4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride

    • Product Name 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride
    • Alias MF-3NTF
    • Einecs 401-030-6
    • 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

    308338

    Product Name 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride
    Molecular Formula C14H10F3NO4
    Molecular Weight 313.23 g/mol
    Appearance Yellow solid
    Cas Number 88149-49-5
    Melting Point 80-84 °C
    Solubility Slightly soluble in organic solvents
    Density 1.48 g/cm³ (approximate)
    Purity Typically ≥98%

    As an accredited 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Dark amber glass bottle, 25 grams, sealed with a screw cap, chemical label displaying hazard symbols, batch number, and purity information.
    Shipping 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride should be shipped in tightly sealed containers, protected from physical damage and moisture. It must comply with relevant chemical transportation regulations, including labeling and documentation. Shipping should be via recognized carriers, under ambient conditions unless otherwise specified, and handled by trained personnel wearing suitable protective gear.
    Storage Store **4-(4-Methoxyphenoxy)-3-nitrobenzotrifluoride** in a cool, dry, well-ventilated area, away from sources of ignition, heat, and incompatible materials such as strong oxidizers and acids. Keep the container tightly closed and protected from light and moisture. Use appropriate lab safety procedures, including gloves and eye protection, when handling this chemical. Store in a chemical storage cabinet for hazardous substances.
    Application of 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride

    Applications of 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride in Industrial Manufacturing

    4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride serves as an advanced specialty intermediate across targeted chemical sectors. We support downstream manufacturers with stringent compliance documentation, robust QC data, and technical formulation guidance tailored for industrial-scale operations.

    1. Agrochemical Active Ingredient Synthesis

    Major plant protection manufacturers utilize this compound as a building block for selective herbicide and fungicide APIs. The electron-withdrawing trifluoromethyl group and nitro functionality provide essential reactivity in nucleophilic aromatic substitution and coupling reactions, specifically for sulfonylurea and triazole agrochemical development. Our product integrates at the controlled reaction stage in multi-step synthesis, supporting high-purity requirements under strict EHS oversight.

    Industry compliance standards

    • REACH (EC 1907/2006, EU)
    • US EPA TSCA Inventory
    • ISO 9001:2015 for quality management in active ingredient synthesis
    • Chinese Agrochemical Quality Standard NY/T 939

    Typical usage ratio

    • 5–20% of total precursor mass, depending on target API structure and side chain modification requirements

    Downstream process integration

    • Introduced during the nucleophilic aromatic substitution or C–N coupling step following initial condensation of core ring structures
    • Reaction parameters require inert atmosphere, with downstream distillation and crystallization purification

    Final product types

    • Sulfonylurea herbicides (e.g., metsulfuron-methyl precursors)
    • Triazole fungicides intermediates
    • Pre-formulated technical-grade active substances for agrochemical concentrate manufacture
    • Stabilized bulk actives for formulation plants

    2. Pharmaceutical Advanced Intermediate Preparation

    Leading API manufacturers employ this specialty aromatic as a key intermediate when assembling complex heterocyclic skeletal frameworks used in non-steroidal anti-inflammatory drugs (NSAIDs) and certain antineoplastic candidates. The molecule enters controlled-stage synthesis, where its precise reactivity and high-purity profile allow fine-tuning of key physiochemical characteristics vital for downstream regulatory submissions.

    Industry compliance standards

    • ICH Q7 GMP Guide for Active Pharmaceutical Ingredients
    • USP–NF quality requirements for pharmaceutical intermediates
    • Directive 2001/83/EC (EU) guidelines for drug substance imports
    • EDQM Certification of Suitability (CEP) procedures

    Typical usage ratio

    • 2–8% of the total reaction mass, with precise charge adjusted based on batch scale and required substitution degree for downstream pharmacophore assembly

    Downstream process integration

    • Charged at the ring substitution phase following core aromatic assembly
    • Post-reaction, the intermediate is isolated via phase separation and purified using column chromatography or crystallization steps validated for trace impurity removal

    Final product types

    • Complex heterocyclic building blocks for oncology APIs
    • Precursors for NSAIDs with CF3-substituted aromatic scaffolds
    • Phase 1–3 clinical trial quantities of advanced pharmaceutical intermediates
    • Non-interventional process validation batches for regulatory filing

    3. High-Performance Liquid Crystal Monomer Production

    Display material manufacturers integrate our specialty aromatic into the monomer mix for next-generation liquid crystal compounds. The presence of ortho-trifluoromethyl and nitro groups enables the design of mesogenic core structures with precise dielectric anisotropy and improved thermal stability, supporting high-definition TFT-LCD and OLED display applications.

    Industry compliance standards

    • IEC 62321-7-1 for halogen content assessment
    • RoHS 2011/65/EU and 2015/863/EU compliance
    • ISO 9001 and ISO 14001 for quality and environmental management in electronic chemical manufacturing
    • China GB/T 26572-2011 for hazardous substance controls in electronics

    Typical usage ratio

    • 1–5% within total monomer precursor feed, adjusted to meet required birefringence and clearing-point specifications in downstream product design

    Downstream process integration

    • Introduced as a ring-substituted monomer component during the multi-component condensation step, under strictly monitored atmosphere and temperature control
    • Downstream polymerization and purification are performed to ensure compatibility with custom LC formulation demands

    Final product types

    • Liquid crystal display (LCD) panel monomers for high-end TFT displays
    • OLED substrate chemical blends
    • Materials for thin-film transistor (TFT) LC patterning
    • Engineered physical property monomers for adaptive optics and smart glass

    4. Specialty Polymer Modification for High-Performance Coatings

    Technical coatings manufacturers source this aromatic intermediate for the synthesis of fluorinated polyarylates and epoxy derivatives used in aerospace and industrial anti-corrosion coatings. The meta-trifluoromethyl group, combined with electron-donating methoxy and electron-withdrawing nitro substituents, enables formulation specialists to advance hydrothermal and solvent resistance in downstream polymer matrixes.

    Industry compliance standards

    • EN 13523-10:2017 for resistance to chemicals in coil coatings
    • ISO 12944-6 for corrosion protection of steel structures
    • ASTM D522-17 for mandrel bend test of attached coatings
    • REACH Annex XVII restrictions for hazardous aromatics

    Typical usage ratio

    • 3–10% of prepolymer or resin mass, depending on durability requirements and end-use environmental exposure classification

    Downstream process integration

    • Added during the prepolymerization or reactive extrusion step, enabling chemical grafting and functionalization of the polymer backbone
    • Continues through crosslinking and curing, where final property enhancement is locked in

    Final product types

    • Fluorinated polyarylate resins for high-durability industrial coatings
    • Epoxy coating intermediates for aerospace components
    • Chemically-modified resins for chemical and solvent resistance in infrastructure projects
    • Hybrid polymer systems for specialty anti-corrosion applications

    5. Electronic Chemical Synthesis for Photolithography

    Microelectronics firms depend on this compound as a photoactive intermediate to synthesize advanced photoresists and alignment coatings required in high-resolution photolithographic etching. The electron-rich aromatic structure allows precise modification in diazonaphthoquinone and sulfonic acid ester chemistries, supporting rapid and controlled patterning at submicron scales.

    Industry compliance standards

    • SEMI C93-0914 for electronic grade raw material management
    • JEDEC JESD720B for hazardous material restriction
    • RoHS directive for device safety
    • ISO 14644-1 Class 6 or better cleanroom processing

    Typical usage ratio

    • 0.5–3% within total photoresist formulation, adjusted based on target etch profile and contrast ratio for wafer size

    Downstream process integration

    • Charged in the early-stage monomer blend for photoactive compound synthesis, followed by downstream blending into photopolymer matrices
    • Purification via multiple solvent extraction cycles to ensure photolithographic-grade purity

    Final product types

    • Positive and negative photoresists for semiconductor wafer production
    • Alignment layer coatings for LCD and OLED manufacturing
    • Dielectric films for integrated circuits
    • Patterned substrates for MEMS and microsensor devices
    Free Quote

    Competitive 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride 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.

    We will respond to you as soon as possible.

    Tel: +8615371019725

    Email: admin@sinochem-nanjing.com

    Get Free Quote of Sinochem Nanjing Corporation

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    Introducing 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride: A Reliable Choice for Innovation

    Real Manufacturing Perspective on 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride

    In the daily operations of our chemical plant, few compounds attract as much attention from our technical team as 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride. We deal with many specialized intermediates every year, but this one often stands out across a range of client projects, especially those pushing the boundaries in advanced material synthesis and specialized chemical engineering.

    Chemists who work in pharmaceuticals, agrochemicals, and electronics frequently demand products that hold their structure in demanding conditions. From our experience, 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride responds predictably in these settings, largely due to its stable trifluoromethyl group and nitro functionality. This stability saves time and resources during scale-up and helps us build confidence with our partners who rely on clean, reproducible reactions.

    Unique Features Rooted in Day-to-Day Manufacturing

    Handling trifluoromethylated aromatics often requires strict process control and robust safety measures. In our production line, we’ve put years into optimizing each step, starting with high-purity raw materials and monitoring reaction sequences closely. Every kilogram we ship carries the same attention to detail as our internal research batches. Our operations staff views this product as more than just another catalog entry—meeting a consistent level of very low impurity profile and solid batch-to-batch reproducibility comes from hours of plant-floor refinement, not abstract trial-and-error.

    Many customers have commented on the clean color and minimal off-odor in our product, which owes to careful purification steps. During manufacturing, we avoid shortcuts. For example, we use multi-stage crystallization, not just for compliance but to meet in-process test results our technicians verify themselves. Analytical reports showing high mass balance and trace contaminant data come from in-house instrumentation that even regulatory inspectors have praised.

    Understanding the Model and Its Applications

    In this industry, specifying “model” doesn’t refer to a one-size-fits-all code, but rather to a process design that aligns with the performance chemists demand. What we deliver comes as a well-defined, powdered organic intermediate, which integrates smoothly in many syntheses that require an electron-rich aromatic ring with trifluoromethyl and nitro functionality. It often acts as a crucial step in building bigger molecules with desired pharmaceutical activity or in fine-tuning electronic properties for new-age materials.

    The active team in our R&D department regularly fields inquiries regarding competitive alternatives, and we encourage open samples and transparent feedback. Clients developing new actives or stepping up existing synthetic pathways have found this nitrobenzotrifluoride derivative especially useful for further functionalization. The methoxy group offers a convenient handle for downstream chemistry, whether you’re preparing ethers, exploring hydrogenation, or setting up cross-coupling reactions.

    Proven Use Cases and Industry Insights

    Our interactions with end users have shown that 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride adds value in projects targeting specialty pharma intermediates, crop protection research, or polymer component development. Formulators and project chemists praise its compatibility in reactions such as nucleophilic substitution, aromatic nitration, and coupling chemistry. In one large-scale production campaign, a partner reported a measurable reduction in purification steps by switching to our compound, cutting weeks off their timeline. The impact didn’t disappear at the lab scale; scale-up trials retained good yields and maintained product purity above usual threshold values.

    Technical teams using automated process monitoring tools have verified stability over long synthesis windows, and our internal documentation is available to back these claims. Rather than just listing anonymized use cases, we invite regular visits from client teams to audit our process under real operating conditions. They walk the same plant floors, observe how we handle solvent exchange and containment, and witness firsthand that our plant withstands real-world demands—not just ideal lab setups.

    Comparing to Other Fluoroaromatic Compounds

    The market has no shortage of benzotrifluoride-based chemicals, but subtle structure differences create major practical impacts. Experience tells us that trifluoromethyl units can be sensitive to harsh acidic or basic conditions, especially when paired with less robust functional groups. Our product’s 4-methoxyphenoxy and 3-nitro substitution pattern creates stronger resistance to decomposition. For customers running processes under heat or mild catalytic loads, that extra margin protects yields and downstream integrity.

    Similar molecules might share a cas number, but the finer points—particle size distribution, color stability, filterability during formulation—reflect decades of plant refinement. Ramped production cycles have taught us that not every supplier has the luxury of fully-integrated analytical support. We’ve dedicated teams checking every lot for both routine and project-specific properties. Small differences, like staying below certain heavy metal residues, make all the difference in regulatory submissions and commercial success.

    Practical Considerations from Plant to End Use

    Direct feedback from technical buyers and process engineers has shifted how we package and transport this compound. Rather than generic drums, we use containers that reduce static and protect from moisture ingress, since traces of water can threaten downstream reactions. In multiple internal benchmarks, engineering staff found that exposure controls reduced dusting and mitigated losses. What may look like a simple packaging change often arises from years of addressing customer pain points.

    We’ve also walked side by side with safety and environmental inspectors, documenting how our process cuts down on volatile emissions. On the manufacturing floor, we reuse cleaning solvents and treat residual streams at our in-house facility, keeping byproduct levels within safe discharge levels year after year. Operators receive specialized training for handling nitro and fluoroaromatic substances, as regulatory focus on process safety and environmental hazards remains a key priority for clients seeking long-term supply security.

    Regulatory Insights and Real Compliance

    Navigating regulatory compliance has proven to be a constant learning process. Because clients often request documentation for complex regulatory reviews, our compliance team maintains up-to-date support on major frameworks relevant to fluoroaromatic intermediates. We document lot-specific traceability using digital records and have clean retention samples available for customer validation. Over the years, these efforts built trust with partners whose audit requirements change as regulations shift.

    Routine internal audits and third-party checks have shaped our understanding of both regional and international expectations. Results from these efforts include reduced response times on technical dossiers and improved collaboration with downstream partners—especially when facing fast project turnarounds. The technical leadership at our plant regularly updates plant SOPs based on both new regulatory guidance and direct feedback from auditors, ensuring that our product never becomes a bottleneck in quality control.

    Real Stories in Research and Scale-Up

    Researchers who visit our site often ask about the provenance of each batch. We maintain open process records, and onsite tours showcase our aromatic chemistry suites and post-synthesis clean-up areas. For projects headed to pilot scale or regulatory submission, project scientists appreciate hands-on access to the analytical team supporting their product. Issues uncovered in post-reaction crystallization or filtration rarely catch us off guard because production chemists and engineers talk daily, sharing details about things as basic as filtration speeds or occasional off-spec haze.

    On several occasions, academic partners collaborated with us on joint projects, sharing their findings when subtle impurities impacted their downstream reaction mechanisms. Their findings led to small but meaningful tweaks in recrystallization temperature or solvent selection, which were then implemented in production. This hands-on approach to feedback ensures that data flows both ways, making future batches more robust and easier to validate for end users.

    Customer Support: What Truly Matters

    Experience reminds us that transparency, access to technical support, and a record of prompt shipment build more customer loyalty than simple cost competition does. Our sales team keeps close communication with researchers in the field, sharing analytical data and fielding process improvement questions. Clients have called seeking advice about solvent compatibility and alternative reaction protocols, and our technical leads often provide answers based on years of actual plant experience rather than just generic advice.

    We remain available for troubleshooting support, drawing on the collective expertise of process operators, quality analysts, and safety engineers. Every feedback loop, from a new yield improvement discovered in a client lab to an unusual analysis out of our QC lab, enters our internal knowledge base. This cycle continually upgrades the performance of both our product and our customer service.

    Challenges and Solutions in Commercial Manufacturing

    Each expansion phase, whether building new reactors or integrating enhanced dust collection, brings a learning curve. The global supply chain landscape stays dynamic, often requiring logistics teams to rethink shipping routes and packaging to maintain product integrity under different climates. During one recent monsoon season, our shipping staff identified moisture-risk corridors, adding new desiccant controls at certain warehouse points—changes that directly reduced returns and boosted user satisfaction.

    Persistent dialogue with logistics partners and end users sharpened our sense of what safeguards matter most. Real-time tracking, careful quality checks at transfer hubs, and adaptive scheduling reduced supply interruptions by a high margin over three years of data. Customer complaints about late arrivals or out-of-spec product dropped dramatically after we incorporated these lessons.

    Building Long-Term Confidence in Specialty Aromatics

    Bringing a specialty nitrobenzotrifluoride to customers means more than just offering a high-assay chemical—it means delivering all the supporting knowledge, reliability, and safety necessary to use it with confidence. Our teams care about consistency because process failures cost real time and money, both for us and those who depend on our supply. High standards for incoming raw materials, constant upgrades to filtration technology, and detailed characterization of finished goods all reflect our commitment.

    Partnerships don’t evolve by standing still. We frequently participate in industry knowledge exchanges, opening our shop floors for peer benchmarking meetings and contributing real-world production data to technical consortia. These interactions let us bring back best practices, many of which filter straight into how we produce and deliver consistent batches of 4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride. We don’t treat feedback as a one-way street: it’s routine for us to share challenges we’ve faced, so end users don’t lose time learning old lessons over again.

    Practical Product Advantages Seen in Everyday Use

    Many of our long-term customers point out that their processes run smoother not just because of the underlying chemistry, but due to the predictability of supply. They know that, batch after batch, they’ll receive product that dissolves as expected, reacts cleanly, and minimizes unforeseen issues in multi-step syntheses. In high-value projects—where every lost gram matters—this stability can make or break timelines.

    Those building next-generation active ingredients or precision polymer additives note the value of unchanging impurity profiles. Reproducibility takes time to achieve. At our plant, operators and chemists work side by side, making repeated checks during both the bulk production and final isolation. These checks keep surprises off the table for formulation and scale-up work on the customer’s end. Such relentless attention to process detail translates into fewer production downtimes and tighter control over quality parameters.

    Continuous Improvement Driven by Real User Needs

    The feedback loop never ends. For every batch that ships out, QC teams run post-delivery satisfaction checks, gathering input from partners worldwide. Whether it’s a procedural tweak prompted by an event in an overseas customer’s plant or an internal improvement suggested by our own technicians, the process never stops evolving. Data from audits, field reports, and technical consultations funnels straight back to production planning, closing the loop between our front-line operations and research departments.

    We’ve seen how uncertainty—whether regulatory, logistical, or technical—can hold back progress on promising research or quick commercialization. By investing in people, technology, and open communication, we’ve reduced these unknowns for everyone counting on this compound. It’s not about promising perfection, but about keeping real, fact-based dialogue at the heart of chemical manufacturing.

    Final Thoughts from the Factory Floor

    4-(4-Methoxyphenoxy)-3-Nitrobenzotrifluoride represents more than a line item in our product catalog. Its consistent performance, technical transparency, and adaptability arise from daily decisions on the plant floor—whether in raw material vetting, equipment maintenance, or post-production care. Decades of dedication to real-world detail ensure our supply teams, technical experts, and customers move forward with a shared sense of what quality really means. Real partnerships thrive on such grounded practices, supporting not just today’s projects but the future innovations waiting to be discovered.