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1-Naphthyl Acetonitrile

    • Product Name 1-Naphthyl Acetonitrile
    • Alias 1-Cyanoethyl naphthalene
    • Einecs 221-459-3
    • 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

    856790

    Cas Number 132-90-1
    Molecular Formula C12H9N
    Molecular Weight 167.21
    Iupac Name 2-(Naphthalen-1-yl)acetonitrile
    Appearance White to off-white crystalline powder
    Melting Point 52-56 °C
    Boiling Point 232-234 °C at 18 mmHg
    Density 1.16 g/cm3
    Solubility In Water Insoluble
    Flash Point 140 °C
    Purity Typically ≥98%
    Synonyms 1-Cyanomethylnaphthalene
    Storage Temperature Room temperature
    Smiles N#CCc1cccc2c1cccc2
    Inchi InChI=1S/C12H9N/c13-9-8-11-6-2-4-10-5-1-3-7-12(10)11/h1-7H,8H2

    As an accredited 1-Naphthyl Acetonitrile factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 1-Naphthyl Acetonitrile, 100 grams, is supplied in a sealed amber glass bottle with a secure screw cap, labelled for laboratory use.
    Shipping 1-Naphthyl Acetonitrile is shipped in tightly sealed containers, typically under ambient conditions. It should be handled as a hazardous chemical, with packaging compliant with local regulations for transport. Ensure containers are properly labeled and protected from physical damage. Avoid exposure to heat, ignition sources, and moisture during shipping.
    Storage 1-Naphthyl Acetonitrile should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from sources of ignition, heat, and incompatible substances such as strong oxidizers or acids. Protect it from light and moisture. Proper labeling and access restriction are recommended. Use chemical-resistant materials for containers, and follow institutional and regulatory guidelines for chemical storage.
    Application of 1-Naphthyl Acetonitrile

    Applications of 1-Naphthyl Acetonitrile in Industrial Manufacturing

    1-Naphthyl Acetonitrile serves as a critical intermediate in several fine chemical production pathways, enabling the efficient synthesis of specialty downstream products. As an original manufacturer, we supply this raw material with strict batch consistency, addressing the stringent quality and regulatory demands of advanced industrial sectors. The following application scenarios illustrate how our refined grade supports end users at various stages of production.

    1. Agrochemical Synthesis: Selective Fungicide Intermediates

    Producers of selective fungicides utilize 1-Naphthyl Acetonitrile as an essential building block during multi-step organic synthesis, particularly for the preparation of carboxamide and amide-class active compounds. The performance and impurity profile of this intermediate directly affect subsequent crop protection efficacy, stability, and regulatory acceptance in global markets.

    Industry compliance standards

    • U.S. EPA FIFRA registration process
    • EU Regulation (EC) No 1107/2009 for plant protection products
    • China GB/T 1600-2018 pesticide technical standard
    • OECD guidelines for testing of chemicals (analytical purity requirements)

    Typical usage ratio

    • Intermediate input at 1–1.3 molar equivalents relative to target amide functional group (process optimization may adjust the range by ±10% depending on desired yield and impurity constraints)

    Downstream process integration

    • Enters the catalytic acylation or amidation stage following initial halogenation or nitration of base naphthalene substrates; integration occurs prior to complex esterification and final blending steps

    Final product types

    • Benzamide-type fungicides (e.g., boscalid intermediates)
    • Pyridine-carboxamide derivatives for soil fungicide manufacture
    • Protective seed treatment formulations for cereals and legumes

    2. Pharmaceutical API Building Blocks: Antihypertensive and Antitumor Agents

    Pharmaceutical manufacturers employ 1-Naphthyl Acetonitrile as a core intermediate in synthetic routes for the production of active pharmaceutical ingredients, notably those containing substituted naphthyl moieties in antihypertensive and antitumor applications. The purity and trace elements of this compound influence API batch certification, final medicinal efficacy, and clinical compliance documentation.

    Industry compliance standards

    • ICH Q7 GMP for active pharmaceutical ingredients
    • USP–NF and Ph. Eur. applicable monograph contaminant limits
    • FDA 21 CFR Part 211 cGMP for finished pharmaceuticals
    • Chinese Pharmacopoeia (ChP) guidance for API synthesis intermediates

    Typical usage ratio

    • Typically introduced at 0.8–1.1 molar ratio based on subsequent alkylation or cyclization reagent; minor adjustment responds to target API route efficiency

    Downstream process integration

    • Serves as the starting scaffold during nucleophilic aromatic substitution or amide coupling; integration happens immediately before side-chain functionalization and salt formation steps

    Final product types

    • Antihypertensive APIs, such as selective naphthyl-based receptor blockers
    • Small-molecule antitumor intermediates used in generic and proprietary oncology drugs
    • Reference standards for pharmaceutical research and development

    3. Dye and Pigment Intermediates: Azo and Anthraquinone Colorants

    Colorant manufacturers incorporate 1-Naphthyl Acetonitrile in the synthesis of specialty azo dyes and anthraquinone-derived pigments. The compound’s compatibility with diazotization and coupling reactions supports the development of high-fastness dyes for textiles and coatings, where compliance with global chemical restriction lists is crucial for market entry.

    Industry compliance standards

    • EU REACH Annex XVII (Azo dye restrictions)
    • OEKO-TEX Standard 100 for textile inputs
    • ISO 9001:2015 for colorant manufacturing process control
    • ZDHC MRSL (Manufacturing Restricted Substances List) compliance

    Typical usage ratio

    • 0.5–1.0 molar equivalent relative to diazonium salt or coupling partner—precisely calibrated to avoid color shade deviation or overconsumption in batch production

    Downstream process integration

    • Activated as the aromatic substrate for diazotization (under controlled acidic aqueous conditions); further processed in high-temperature coupling reactors with sulfonated or aminated reagents

    Final product types

    • Acid and disperse dyes for synthetic and cellulose textiles
    • Anthraquinone pigments for plastics and paints
    • Color concentrates for inkjet and high-performance coatings

    4. Fine Chemical Synthesis: Specialty Fragrance and Flavor Precursors

    Producers of aroma chemicals and specialty flavors apply 1-Naphthyl Acetonitrile as a precursor for naphthyl methyl ketones, which serve as key intermediates for high-grade fragrances found in consumer and industrial products. The residue and isomer profile of the supplied material are tightly monitored to ensure regulatory approval and consistent olfactory properties in final blends.

    Industry compliance standards

    • IFRA (International Fragrance Association) and RIFM guidelines for ingredient safety
    • EU Flavouring Regulation (EC) No 1334/2008
    • U.S. FDA 21 CFR Part 172.515 for synthetic flavor substances
    • ISO 9235:2013 definition for aromatic raw materials

    Typical usage ratio

    • 0.6–0.9 molar basis during Friedel–Crafts acylation or Grignard reactions, with final ratio adjusted to the desired carbonyl conversion rate and aroma intensity in downstream blending

    Downstream process integration

    • Introduced as the initial intermediate in carbon–carbon coupling or methylation before final purification; integrated early to allow control of byproduct formation and trace contaminant removal

    Final product types

    • Musk-type scents for personal and fabric care products
    • Aromatic flavoring agents for food and beverage applications
    • Fine fragrance ingredients for perfumery composition
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    Certification & Compliance
    More Introduction

    Introducing 1-Naphthyl Acetonitrile: A Direct Manufacturer’s Perspective

    What Sets Our 1-Naphthyl Acetonitrile Apart

    Bringing a chemical like 1-Naphthyl Acetonitrile to the market takes more than sound chemistry and a well-run plant. At the production line, there’s a human element behind every batch—technicians, engineers, shift leaders—who know the demands this material faces in real-world applications. Our focus always comes back to a simple truth: reliability in every package. Our 1-Naphthyl Acetonitrile provides consistent purity and performance, which can only result from a deep understanding of the steps from raw material sourcing through final packaging.

    Years in manufacturing have shown us how small variations during crystallization or distillation shift downstream reaction yields. Maintaining a tight handle on temperature, pressure, and moisture—right from the synthesis of naphthalene derivatives—gives us a product with the quality that jobsites, labs, and pilot plants count on. This isn’t just a technical discipline; it’s a commitment we make to chemists, process development engineers, and purchasers looking to forecast projects with certainty.

    Product Features & Specifications from the Production Floor

    For every batch of 1-Naphthyl Acetonitrile, our standard specification targets a high assay, with typical purity reaching above 99%. Impurity profiling safeguards against unknown side-products that might introduce risk during pharmaceutical intermediate synthesis or crop protection work. The melting point, handled in-house with digital equipment, stays within a tight window, minimizing chances for surprises during formulation or process screening. Our process tracks moisture content carefully, which keeps reaction outcomes reproducible for customers running scale-ups or kilo-lab quantities.

    Our experience has taught us to pay attention to the seemingly minor details, like color and particle size distribution. Users in research and process development notice these deviations first. A pale hue instead of white or off-white signals subtle problems upstream. Our routine is to address those early, avoiding scrap or reprocessing later in the supply chain. Material is offered in well-sealed containers, packaged under nitrogen atmosphere if the receiving site requests it, because downstream chemists often see the difference once a reaction won’t start as expected due to air exposure or traces of moisture.

    The Real-World Uses: Chemistry That Supports More Than Theory

    1-Naphthyl Acetonitrile plays a key role as a building block in advanced synthesis, particularly within pharmaceutical research and specialty agrochemical development. We have watched the demand in these areas grow every year. Medicinal chemistry labs employ it as a precursor for naphthalene-derived amines and acids, where side-chain functionalization opens doors to structure-activity research. Our production batches end up in both pilot batches of emerging cancer therapies and established screening libraries for anti-inflammatory agents. The feedback loop from these users spotlights not just the basic quality, but also the need for long-term consistency when projects stretch through multiple quarters—or years.

    Custom synthesis units and contract manufacturers, the kind who live and die by gram-for-gram reliability, often ask about the way our material handles reactivity under different alkylation or condensation conditions. Through our own hands-on process development, we learned the value of a consistent melting point and the absence of trace contaminants that might poison catalysts downstream. Scalability sits at the center of their concern, which guides our approach to every batch. This shape of partnership comes from our own background progressing from 10-liter glassware trials to batches in the hundreds of kilos. Practical experience with failures and scale-up pain points has influenced our daily controls and observations far more than any certification badge.

    Real Differences from Other Naphthyl Compounds

    Navigating product offerings in the naphthalene series presents countless choices for buyers and development chemists. We have assembled plenty of data—both internal and from collaborative users—on how 1-Naphthyl Acetonitrile diverges in use and handling compared to other naphthyl nitriles or acetonitrile derivatives.

    Unlike simple acetonitrile or benzonitrile analogs, the naphthyl backbone delivers bulk and electronic effects in new ways. The 1-position, as opposed to the 2-isomer, changes the spatial availability for substitutions and impacts subsequent cyclization chemistry. Our team frequently works with customers who confuse 1- and 2-naphthyl variants, only to find that their target molecule’s properties depend heavily on the starting isomer. Specifications between these molecules look similar, yet side reaction profiles and downstream purification steps tell a different story.

    Many clients coming from bulk procurement backgrounds first notice cost or delivery schedule. Over time, process bottlenecks—often at step three or four of a multistep synthesis—draw attention. Slight differences in solubility, volatility, or reactivity between similar naphthyl products appear minor on a spreadsheet but lead to real dollars spent on overtime or product scrap. Our own initial runs through manufacturing made these lessons clear. By collaborating with project leads and QA managers handling sensitive syntheses, we adapt our material and documentation to directly address those sticking points.

    Supporting Users from Scale-Up to Production

    Working with 1-Naphthyl Acetonitrile involves more than shipping sealed drums. What matters most to our clients—and us as producers—is performance on scale-up. Labs can forgive a little extra haze in a beaker reaction, but production teams have no margin for surprise.

    Our own plant expansion experience familiarized us with the particular quirks of this chemical as it moves from the analytical scale up toward multikilogram reactors. Batch-to-batch variation tends to amplify, not cancel out, when increasing scale. Factors like trace catalyst residues from the initial naphthyl halide substitution, or subtle shifts in color, may go unnoticed in a ten-gram run but show up as fouling or inconsistent yields in a multi-hundred kilo vessel. Handling these problems in-house means we face the consequences ourselves, and our technical support team is rooted right at the production site, not in an office many kilometers away. We rely on that proximity to respond quickly to any concerns from our customers because we have had to solve our own headaches in real-time.

    Temperature control matters as much in packaging as in reaction. Handling crystalline metabolites and analogs has given us perspective in optimizing container selection and shipping methods. Poor stockage during humid months or fluctuations in warehouse storage temperatures can impact not only product homogeneity but also shelf life—and expensive surprises down the line for everyone involved. Our facility routinely samples retained lots quarterly, and we share real stability data for longer-term projects where repeatable quality is central to ongoing synthesis campaigns.

    Quality and Compliance: Built from Process, Not Paper

    Audits and compliance requirements continue to expand. Over the years, our site teams have moved from clipboards and legacy paper logs to digital LIMS for both batch verification and full traceability on each kilo made. While documentation remains necessary, the reliability our customers enjoy starts on the shop floor. In-process adjustments keep off-spec material out of finished drums—no matter how attractive high theoretical yields look on paper. Analytical chemists working in the same building as operators sharpen troubleshooting and identify process drift earlier, creating a system where corrections are made before issues reach the customer.

    We see regulatory scrutiny increase every year, especially with global sourcing. Our commercial partners frequently request real details about residual solvents, heavy metal content, or nitrosamine precursors—prompted by updated pharmacopoeia standards and special guidance documents. Addressing those requests falls within our regular documentation, not as a time-consuming workaround. The aim has always been to operate with the same quality-driven mindset whether the batch goes to a pilot pharmaceutical run or as an intermediate for agrochemical actives.

    Certifications alone don’t address the realities that arise on the production line. Our own annual investments in analytical upgrades, environmental emissions controls, and staff training came about from direct customer audits and internal incident reviews. That focus on incremental improvement has made a bigger difference in long-term quality than any one-time overhaul. It’s a philosophy built across decades—not by reading guidelines, but by making mistakes, learning from batch failures, and creating a culture where every technician can raise process concerns without layers of bureaucracy.

    Delivering to the Laboratory and Beyond

    Supplying 1-Naphthyl Acetonitrile to a range of clients means understanding that chemists and buyers don’t want delays, product variability, or uncertainty. We have learned through years in the packaging and distribution trenches that clear communication makes all the difference. Labs building synthetic pathways for new APIs need next-lot consistency and transparent batch records. Process scale facilities require guarantee on volume, documentation, and backup in case plans change.

    Global disruptions, whether supply chain delays or regulatory stoppages, have made contingency planning a fabric of our logistics operation. Multiple raw material sources, buffer stocks, and validated backup routes let us keep our customer commitments through shocks and market shortages. These aren’t abstract risk management ideas—they stem from lived experience during border closures, container shortages, and regional storms. We work directly with logistics partners at every step, often troubleshooting label issues, MSDS requirements, or customs delays alongside the receiver.

    Customers using our 1-Naphthyl Acetonitrile for their own regulated products—pharmaceutical, crop science, or specialty pigment—depend on rapid, detailed responses. We coordinate with R&D and QA teams, sharing recent COAs, stability results, and sample vials so that validation hurdles don’t slow key timelines. Feedback reaches our floor teams directly, which builds trust on both sides. This relationship keeps us honest about our capabilities, and ensures we stick to what we know best.

    Listening and Improving: Our Approach to Product Evolution

    Launching and sustaining the supply of a specialty product like 1-Naphthyl Acetonitrile takes more than R&D innovation and routine process discipline. Our ongoing success—measured both by repeat orders and the direct feedback we receive—depends on an open, responsive approach to product improvement. Customer input about filtration requirements, batch-to-batch stability, or handling quirks forms the backbone of our continuous development agenda.

    Kaizen, or gradual daily improvement, describes our manufacturing philosophy more accurately than formal change projects. Small tweaks in our drying ovens, selection of packaging liners, or adjustment of seed crystal routines have had far-reaching effects on purity profiles and ease of use for our customers’ chemists. Occasionally, we field requests for custom particle size distributions, halogen-specific impurity cutoffs, or alternate solvent washes. We handle these as new challenges, drawing upon the cross-functional expertise built over years running a full-scale fine chemical facility.

    The Maker’s Responsibility: Beyond Product to Partnership

    Our team sees itself as more than a supplier. The act of producing 1-Naphthyl Acetonitrile places us inside a network of innovation, risk, and shared purpose that stretches far beyond our production site. This material passes through hundreds of hands, from shipping teams and customs agents to bench chemists and process validation leads. Each has a stake in the outcome, and each notices different details about the material they receive. We take those observations seriously because we’ve discovered, time and again, that trust is earned through incremental proof—not flashy marketing or one-off price cuts.

    In difficult years, when raw material supplies tighten or transportation failures block the flow of goods, our commitment to frank communication and reliability means more than usual. The knowledge built up—reactor maintenance, vendor qualification, analytical method validation—keeps us ready to respond even to unexpected customer needs. Few days go by without a problem that asks for both practical experience and on-the-ground creativity. This is where being the manufacturer, instead of just moving product, creates long-term relationships that power scientific advances around the world.

    Summary: The Manufacturer’s Commitment

    Supplying 1-Naphthyl Acetonitrile to advanced industries means real effort at every stage, from raw naphthalene transformation to final bulk shipment. Our technical investments, day-to-day rigor, and honest communication make a real difference for users who depend on each kilogram delivered. Every member of our team, from plant operators to packaging inspectors, shares this responsibility. Our business has grown because our customers know we solve problems, answer tough questions, and support innovation—not just by making claims, but by showing results in the finished product itself.

    For us, every drum, every bag, and every sample tells our story as chemical manufacturers. Trust is built one shipment at a time, and we aim to deliver that same confidence to every receiving dock, lab bench, and production suite that chooses to work with our material. We look forward to contributing our expertise and experience to each new project, forging partnerships that advance chemistry and industry around the world.