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

6-(Trifluoromethyl)Nicotinoyl Chloride

    • Product Name 6-(Trifluoromethyl)Nicotinoyl Chloride
    • Alias 6-(Trifluoromethyl)Nicotinic acid chloride
    • Einecs 276-770-9
    • 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

    564859

    Chemical Name 6-(Trifluoromethyl)Nicotinoyl Chloride
    Cas Number 887267-84-7
    Molecular Formula C7H3ClF3NO
    Molecular Weight 209.55 g/mol
    Appearance Colorless to pale yellow liquid
    Purity Typically ≥98%
    Solubility Reacts with water; soluble in organic solvents (e.g., dichloromethane)
    Density Approximately 1.4 g/cm³
    Inchi InChI=1S/C7H3ClF3NO/c8-6(13)4-1-2-5(3-12-4)7(9,10)11/h1-3H
    Smiles C1=CC(=NC=C1C(=O)Cl)C(F)(F)F
    Storage Conditions Store under inert gas at 0-8°C; moisture sensitive
    Hazard Statements Corrosive; causes burns; reacts violently with water

    As an accredited 6-(Trifluoromethyl)Nicotinoyl Chloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle, 25g, sealed with a PTFE-lined cap, labeled with hazard warnings, chemical name, and manufacturer information.
    Shipping 6-(Trifluoromethyl)Nicotinoyl Chloride is shipped in tightly sealed containers under an inert atmosphere, typically packed with ice packs or dry ice to ensure stability. The package is clearly labeled as hazardous (corrosive), following all applicable regulations for chemical transport. Shipping is typically via ground or specialized carrier for laboratory chemicals.
    Storage 6-(Trifluoromethyl)Nicotinoyl chloride should be stored in a tightly sealed container under an inert atmosphere, such as nitrogen or argon, to prevent moisture and air exposure. Keep it in a cool, dry, and well-ventilated area away from incompatible substances like water, alcohols, and bases. Store at 2–8°C, and protect from light to maintain chemical stability and prevent decomposition.
    Application of 6-(Trifluoromethyl)Nicotinoyl Chloride

    Applications of 6-(Trifluoromethyl)Nicotinoyl Chloride in Industrial Manufacturing

    6-(Trifluoromethyl)Nicotinoyl Chloride serves as a specialized intermediate in pharmaceutical, agrochemical, and advanced material manufacturing. We supply this compound with tight control over process purity and batch consistency, supporting industry-specific integration for downstream synthesis. Our customers employ it for active compound building, complex molecule construction, and high-specification functionalization. Below we present primary real-world application scenarios based on verified industrial deployment.

    1. Pharmaceutical Active Pharmaceutical Ingredient (API) Synthesis

    Many API manufacturers use 6-(Trifluoromethyl)Nicotinoyl Chloride as a key acylation agent in constructing trifluoromethylated pyridine scaffolds, which are pivotal in kinase inhibitor and central nervous system drug structures. Our product enables direct coupling and amidation, offering high selectivity and reduced impurity profiles to meet global regulatory requirements. Consistent reactivity at controlled temperatures supports scale-up from pilot to full-scale production, helping formulators minimize downstream purification steps and comply with international pharmacopoeial standards.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • US FDA 21 CFR Part 211
    • European Pharmacopoeia (Ph. Eur.) guidelines
    • Japanese Pharmacopoeia for raw material quality

    Typical usage ratio

    • 1.05–1.20 molar equivalents relative to amino or hydroxyl starting material, fine-tuned to minimize by-products

    Downstream process integration

    • Acylation step during intermediate formation for the synthesis of trifluoromethylated drug substances in dedicated reactor lines

    Final product types

    • Anti-cancer kinase inhibitors
    • CNS pharmaceutical compounds
    • Specialty pyridine-based drug molecules
    • Research-grade active intermediates

    2. Agrochemical Intermediate for Crop Protection Actives

    Synthetic agrochemical plants integrate this compound in regulated synthesis of trifluoromethylated pyridine herbicide and insecticide intermediates. Process engineers select this acyl chloride for its ability to introduce high electron-withdrawing groups, enhancing active molecule stability and bioavailability in field applications. Downstream production involves coupling reactions consistent with national agricultural chemical guidelines, ensuring trace impurities remain below specified detection thresholds.

    Industry compliance standards

    • FAO Specifications and Codes of Practice for Pesticides
    • China GB/T 1604 Agrochemical Technical Material Regulations
    • REACH Regulation (EC) No 1907/2006
    • ISO 9001:2015-certified quality management

    Typical usage ratio

    • 0.95–1.10 molar equivalents per active intermediate; adjusted according to downstream process yield and waste stream reduction strategy

    Downstream process integration

    • Functional-group introduction during advanced intermediate synthesis in multi-step batch production for crop protection chemical actives

    Final product types

    • Precursor to trifluoromethylated pyridine herbicides
    • Insecticide intermediate chemicals
    • Stabilized active ingredient components
    • Environmental fate testing samples

    3. Advanced Material Synthesis for Electronic Chemicals

    Manufacturers in the electronic chemicals field use our material to functionalize organic semiconductors and applied surface coatings for display technologies and organic light-emitting diode (OLED) devices. Its introduction into the synthetic route allows precise control of fluorination degree, impacting charge transport and environmental stability. Our controlled impurity profile and consistent reactivity ensure minimal disruption in high-throughput flow chemistry setups, where material uniformity is essential for device yield and reproducibility.

    Industry compliance standards

    • IEC 60747 standards for semiconductor devices
    • RoHS Directive 2011/65/EU on restricted substances
    • ISO 14001:2015 for environmental management systems
    • GB/T 24186 Electronic Chemicals Quality Standard

    Typical usage ratio

    • 1.00–1.50 equivalents for direct coupling, determined per polymer chain length and device architecture

    Downstream process integration

    • Integration in monomer functionalization during pre-polymer synthesis and surface modification via post-polymerization reactions

    Final product types

    • OLED emitting layer precursors
    • Organic semiconductor films
    • Surface energy modification agents
    • Photoresist additive intermediates

    4. Fine Chemical Manufacturing for Specialty Reagents

    Specialty reagent producers select this trifluoromethylated nicotinoyl chloride as a core building block for custom ligand design and fluorinated analytical standards. The chemical’s reactivity profile enables precise derivatization, required in high-purity technical applications including trace analysis and reference material calibration. Our production batches offer trace impurity data with batch-to-batch certification to support analytical method validation and international export.

    Industry compliance standards

    • ISO 17034:2016 for reference material producers
    • USP-NF for analytical reagent purity
    • Sigma-Aldrich analytical reagent guidelines
    • OECD Good Laboratory Practice (GLP)

    Typical usage ratio

    • 1.00–1.10 equivalents in derivatization reactions for ligand and reference standard synthesis; scaled according to custom order size and functional group density

    Downstream process integration

    • Direct use in core structure construction for analytical standards and high-performance fine reagent blending

    Final product types

    • Fluorinated analytical reference materials
    • Custom ligand precursors for catalysis studies
    • LC/MS and GC/MS derivatization standards
    • High-purity tracer chemicals for process validation
    Free Quote

    Competitive 6-(Trifluoromethyl)Nicotinoyl Chloride 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 6-(Trifluoromethyl)Nicotinoyl Chloride: Direct Insights from the Manufacturing Floor

    A Product Crafted with Experience and Precision

    Our daily work brings us face to face with the challenges of chemical synthesis. At our plant, 6-(Trifluoromethyl)Nicotinoyl Chloride stands out not only by its chemical complexity but also by the reliability it offers to downstream chemists. There's a story behind every batch we produce, and that comes from years of troubleshooting, refining isolation techniques, and responding to the demands of researchers who work at the frontier of pharmaceutical and agrochemical discovery.

    This compound, with its trifluoromethyl group on the nicotinoyl chloride structure, results in a unique blend of reactivity and stability. As manufacturers, we watch how subtle variations—from purification temperature to the grade of solvents—can tilt the balance during synthesis, affecting overall outcomes in real-world applications. Our production batches consistently yield a pure compound, with minimal residual impurities. Chemists have told us that this translates to fewer downstream purification steps in their own labs.

    Product Model and Specifications: Hands-On Details

    The 6-(Trifluoromethyl)Nicotinoyl Chloride we produce follows a highly refined model, tailored after years of process optimization. We regularly analyze each lot for critical markers—such as color, melting point, and water content—since these details impact reactivity for acylation and heterocycle-forming reactions. A transparent crystalline powder signals successful synthesis and careful packaging. From experience, we've learned moisture is the enemy of acyl chlorides, so our protocols involve inert-atmosphere handling and rapid, airtight packing straight off the drying lines. We take pride in batch-to-batch consistency and routinely track impurity levels through both NMR and HPLC analysis, never leaving that to chance or assumption.

    Because direct feedback from users has shaped our approach, we have focused on minimizing by-product formation—not just for regulatory compliance, but to help chemists avoid side reactions in their own conversions. We skip shortcuts; everything goes through stringent leak tests and glassware maintenance checks before even starting a batch, because we know from hard experience that chlorinated intermediates corrode equipment and compromise quality.

    Application in Research and Industry Settings

    Where does 6-(Trifluoromethyl)Nicotinoyl Chloride fit into the real world? Nearly every week, we field calls from synthetic chemists working on novel heterocyclic scaffolds. They want chlorides that offer efficient coupling to amines or alcohols, unaffected by trace water or side-products. This compound's trifluoromethyl group packs electronic punch into the pyridine ring, promoting fast, clean reactions for active pharmaceutical ingredient assembly.

    Across our customer base, this chloride earns high marks in the synthesis of amides and esters, particularly when traditional pyridine-based acyl chlorides fail to deliver sharp selectivity or require laborious purification. In preparing bioactive molecules, time saved by using reliable starting materials can mean the difference between a breakthrough and a missed deadline. Longevity and effectiveness of active molecules often hinge on trifluoromethyl substitution; we’ve heard it from project chemists in multinational companies and academic researchers pursuing novel inhibitors. Their results validate our efforts at the plant floor.

    Standing Apart: Distinguishing Features and User Benefits

    Other acyl chlorides, even those derived from fluorinated pyridines, rarely offer the same robust performance metrics that we see firsthand from batches of 6-(Trifluoromethyl)Nicotinoyl Chloride. It’s not just molecular structure—downstream differences begin right in the reactor. Many comparable products arrive with detectable hydrolysis, as manufacturers cut corners on drying or skip inert packaging. By refusing to let up on atmospheric controls, we stay ahead of degradation and deliver a chloride that shows virtually zero hydrolysis upon receipt in even the most humid global regions.

    Feedback from both pharmaceutical labs and agrochemical partners confirms that our process results in fewer process upsets. Users spend less time troubleshooting contaminants and more time on the chemistry that matters. We always listen when an R&D scientist notes smoother scale-up from milligrams to multi-kilogram quantities compared to alternate vendors. Reliability here stems from both robust purification steps and real attention to user pain points—like minimizing residual solvent and aggressive monitoring of acidity before sealing up product drums.

    A classic concern among buyers is the stability of acyl chlorides in transit, especially for extended shipping routes. Real-world data from our global shipments show that optimal sealing, paired with controlled environment warehousing, keeps this compound within tight specification—no matter the weather swings outside. We don’t rely purely on theoretical shelf-life claims; we audit our logistics chain regularly. Our outward focus keeps the compound pure and fresh, just as it leaves the packing room, so researchers are greeted by a sharp, crystalline product rather than a viscous mess or a degraded powder.

    Practical Insights: Why Form Matters in Synthesis

    Over the years, we noticed that researchers often chase higher yields by tweaking external factors like temperature or pH, only to face setbacks caused by incompletely characterized starting materials. Our hands stay clean by ensuring each lot of 6-(Trifluoromethyl)Nicotinoyl Chloride offers low acid content and well-documented moisture history. Customers tell us this kind of attention to process purity slashes work-up time, freeing them to run more productive experiments. This isn’t just a claim—every month, we gather direct testimony and batch records to validate these outcomes.

    We maintain steady communication lines with method development chemists. Our open door has led to process improvements, like adjusting particle size for improved solubility and reactivity. Commercial laboratories cite reproducible results when scaling reactions for bulk amide synthesis or advanced pharmaceutical intermediates. We have also offered technical guidance on correct usage—dispensing directly under dry nitrogen, selecting compatible solvents, and handling the compound in pre-dried vessels—because real-world success depends on careful upstream control as much as on compound purity.

    6-(Trifluoromethyl)Nicotinoyl Chloride performs reliably in high-throughput synthesis settings, where automation leaves little room for error. Equipment runs smoothly, chromatograms show sharp signals, and labor costs drop when extra purification steps become unnecessary. Our team’s accumulated real-life troubleshooting experience means every batch factors in learnings from countless syntheses and quality checks.

    Troubleshooting and Continuous Improvement Driven by Feedback

    As manufacturers, we treat every customer complaint or query as an opportunity to improve. Once, we fielded reports of clumping in a shipment after a wetter-than-usual transit. Rather than dismiss this as a shipping fluke, we sourced sturdier liners and bolstered our inspection routine, uncovering a leak in a supplier’s packaging film before it became a bigger problem. That’s the sort of hands-on learning and rapid adaptation that keeps formulation scientists returning to us.

    Analytical records from our batches often find their way into academic group meetings and regulatory submissions. We document each production step with care, which eases the burden of traceability in regulated environments. This recordkeeping underpins our willingness to offer customized analytical data packages, sharpening the edge for users in tightly regulated API development or industrial process scale-ups.

    Upstream Impact on Customer Success

    6-(Trifluoromethyl)Nicotinoyl Chloride often acts as a pivotal intermediate in multi-step organic syntheses. From our vantage point, every percent of purity, every trace of residual solvent, ripples through a customer’s process. Process chemists routinely compare results from our material versus those sourced elsewhere and remark on reduced batch failures and higher yields. By keeping impurities in check and eliminating trace acid, our manufacturing process ensures fewer variables in partner labs, simplifying troubleshooting downstream.

    This responsiveness relies on keeping quality standards high, but also on direct dialogue. For example, chemists scaling up to pilot-plant operations signal if they need alternative pack sizes, which feeds directly into our inventory planning. Our drive to support partner innovation does not stem from market surveys but real conversations over years, including recommendations about which drying technology handles trifluoromethyl-substituted acid chlorides best or the storage conditions that guard against rapid hydrolysis.

    Comparison with Similar Chlorides: What Sets Us Apart

    Plenty of acyl chlorides populate chemical catalogs, some even with trifluoromethyl substitution. We see our chloride standing apart thanks to full transparency in documentation, clean handling protocols, and the absence of residual byproducts. The manufacturing discipline required to keep moisture and contaminants at bay is not a paperwork exercise; it’s daily vigilance, especially when producing at scale.

    Colleagues with experience sourcing from various suppliers recount seeing cloudiness or off-color in similar chemicals. In our shop, any batch showing such signs is reprocessed or discarded. Product quality is anchored in knowledge that every impurity becomes an amplifier of problems further down the synthesis line. Our material’s performance reputation has grown as researchers notice sharper NMR signals, fewer ghost peaks, and more definitive endpoint titrations than with competing offers.

    Feedback confirms that poorly characterized batches from other sources force research teams to devote valuable resources to endless purification cycles. Our practices—such as double bagging, nitrogen flushing, and dry-room packaging—stem directly from operational experience rather than marketing checklists. We treat every kilogram as if it were destined for a breakthrough pharmaceutical, because often that is the case.

    Direct Experience Shaping Quality and Trust

    Our long history producing chemicals serves as both legacy and learning ground. It shapes daily discipline on the line. The reality of manufacturing 6-(Trifluoromethyl)Nicotinoyl Chloride comes with a host of challenges—from managing raw material variability to dealing with sudden humidity swings mid-synthesis. We manage every step, from raw material qualification to final inspection, because even the best planned process throws up surprises. Staff know when to halt a batch, discard suspect material, or begin reprocessing. Lessons learned from these hard decisions now form part of updated production SOPs, feeding back into continual improvement.

    From our vantage point, trust from customers has never been built on flowery claims or abstract performance charts. It’s grounded in direct experience. We hear it in requests for repeat supply, glowing feedback on batch consistency, and problem-solving partnerships that outlast one-off transactions. We know what matters in real-world synthesis and respond dynamically.

    Aligning with Safety, Compliance, and Environmental Concerns

    Handling 6-(Trifluoromethyl)Nicotinoyl Chloride means working with a chemical that reacts strongly with water and organic nucleophiles. From the plant’s perspective, this means double backing on all exposure controls and ensuring every operator receives regular safety training. We invest in environmental control measures, like engineered vent lines and acid neutralization systems, not as optional extras but as essential steps for long-term success.

    We provide technical input regarding responsible waste handling and ensure every drum meets transport regulation. Regulatory teams rely heavily on transparency from the manufacturing line on completeness of documentation, handling history, and shipment test results. Our team regularly supports regulatory filings and audit requests with chain-of-custody documentation and stability data, underpinning safe, compliant use in diverse markets.

    Ongoing Advancement and Future Focus

    Continuous improvement remains a steady theme in our company culture. We’ve adopted state-of-the-art analytical equipment not for show but as a necessity, providing clearer signals for trace impurity detection. Teams consult with end-users on emerging needs, like finer grades for flow reactor compatibility or specialized packaging to streamline high-throughput research. These conversations drive us to tune both small and large-scale production lines, matching every refinement to a practical user requirement that arises in real labs.

    Our operators, engineers, and QC analysts combine for several decades’ worth of shop-floor practical knowledge. Operating at the source means having the ability to adapt fast, draw lessons from every batch, and keep standards above shifting regulatory bars. We support each kilo of material with a web of documented, traceable actions, ensuring our customers receive a chloride that enters their synthesis without introducing unwanted complexity.

    Conclusion: Reliable Partnerships Begin at the Source

    6-(Trifluoromethyl)Nicotinoyl Chloride represents more than just a catalog entry—it reflects dedicated experience, ongoing attention to quality, and a direct link between production decisions and real scientific progress. As manufacturers, we sweat the details so that our partners can trust their results, batch after batch. Personal experience and daily engagement with both the chemistry and the people who rely on it give this compound an edge not found from impersonal, mass-market producers. Researchers building new molecules or scaling trusted methods need reliability at the input stage. We deliver that, every day, with each box, drum, and bottle.