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

3-Nitrobenzamide

    • Product Name 3-Nitrobenzamide
    • Alias 3-nitro-benzamide
    • Einecs 220-648-4
    • 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

    435593

    Chemical Name 3-Nitrobenzamide
    Molecular Formula C7H6N2O3
    Molar Mass 166.13 g/mol
    Appearance Yellow crystalline powder
    Melting Point 197-199 °C
    Density 1.48 g/cm³
    Cas Number 618-88-2
    Pubchem Cid 12011
    Solubility In Water Slightly soluble
    Iupac Name 3-nitrobenzamide
    Smiles C1=CC(=CC(=C1)C(=O)N)[N+](=O)[O-]
    Inchi InChI=1S/C7H6N2O3/c8-7(10)5-2-1-3-6(4-5)9(11)12/h1-4H,(H2,8,10)
    Main Hazard Irritant
    Storage Conditions Store at room temperature, tightly closed

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

    Packing & Storage
    Packing The packaging for 3-Nitrobenzamide (25g) is a sealed, amber glass bottle with a tamper-evident cap and detailed safety labeling.
    Shipping 3-Nitrobenzamide is shipped in tightly sealed containers, protected from moisture and light. It is handled as a hazardous material, complying with local and international regulations. During transport, the chemical is kept cool and dry, clearly labeled, and accompanied by relevant safety documentation, including the Material Safety Data Sheet (MSDS).
    Storage 3-Nitrobenzamide should be stored in a tightly closed container in a cool, dry, and well-ventilated area away from sources of ignition and incompatible substances such as strong oxidizers and acids. Protect the substance from moisture and direct sunlight. Ensure appropriate labeling, and store at room temperature. Follow all relevant chemical hygiene and safety protocols during storage and handling.
    Application of 3-Nitrobenzamide

    Applications of 3-Nitrobenzamide in Industrial Manufacturing

    3-Nitrobenzamide is a key intermediate in several industrial synthesis processes across the pharmaceutical, agrochemical, pigment, and specialty chemical sectors. As a direct manufacturer, we provide this raw material to established production chains requiring precise quality, batch consistency, and strict compliance with regional industrial and safety standards.

    1. Pharmaceutical Intermediate for Active Pharmaceutical Ingredient (API) Synthesis

    Manufacturers use 3-nitrobenzamide as an essential nitration intermediate during the multi-step synthesis of various APIs, including select non-steroidal anti-inflammatory drugs and antineoplastic agents. Direct integration occurs in the preparatory nitration stage, where high purity is crucial to prevent downstream contamination during condensation, reduction, or amidation steps. User process protocols often align with GMP guidelines and require documentation for traceability and impurity profiling.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • European Pharmacopoeia (Ph. Eur.) monographs for relevant APIs
    • US FDA 21 CFR Part 210/211 (cGMP regulations for finished pharmaceuticals)
    • Chinese Pharmacopoeia standards for intermediates and APIs

    Typical usage ratio

    • Mol ratio: 1.0–1.2 equivalents per target intermediate, adjusted for yield optimization
    • Batch usage: Typically 50–300 kg per 1 ton of API output, depending on process specifics

    Downstream process integration

    • Enters after initial aromatic substitution as a nitrated starting material
    • Feeds directly into reduction or further derivatization
    • Subject to solvent extraction and washing before next stage
    • Intermediate purity checked before condensation with amines or carboxylic acids

    Final product types

    • Non-steroidal anti-inflammatory pharmaceuticals
    • Anti-cancer agents (e.g., derivatives used for synthesis of target molecules)
    • Other specialty API molecules containing modified benzamide moieties
    • Regulated generic pharmaceuticals

    2. Agrochemical Synthesis – Herbicide and Pesticide Intermediates

    3-Nitrobenzamide finds targeted application as a precursor in the multi-step preparation of selective herbicidal and pesticidal actives. Agrochemical formulators incorporate the compound during heterocyclic ring formation, ensuring control over isomeric purity to meet crop safety and environmental registration requirements. Manufacturers must maintain stringent oversight of residual nitroaromatic impurities as required by international agrochemical directives and end-user audits.

    Industry compliance standards

    • FAO/WHO International Code of Conduct on Pesticide Management
    • REACH Regulation (EC) No 1907/2006 requirements for intermediates
    • ISO 9001:2015 for agrochemical quality management systems
    • China GB/T 1604—Agrochemical technical and formulation standards

    Typical usage ratio

    • Concentration: 5–15% reaction mol ratio in technical synthesis, matched to end molecule yield
    • 40–250 kg per 1 ton of formulated herbicide or pesticide technical concentrate

    Downstream process integration

    • Introduced during key nitration or amidation reactions in heterocycle synthesis
    • Blended with coupling agents for target ring closure
    • Precipitate isolated and treated for contaminant removal before formulation
    • Used in pilot to commercial scale reactors (250–4,000 L)

    Final product types

    • Triazine herbicides
    • Benzamide-based selective pesticides
    • Intermediates for synthesis of systemic agricultural chemicals
    • Technical concentrate bulk for post-processing and compounding

    3. Pigment and Dye Intermediate for Specialty Colorants

    Colorant manufacturers rely on 3-nitrobenzamide to synthesize specific azo and anthraquinone dyes used in industrial enamels, textile coloration, and plastics. The compound enters as a precursor in diazotization or coupling reactions, where reaction parameters such as temperature, catalyst, and pH require strict adjustment to achieve color strength and migration stability. Process audits focus on minimization of trace impurities that affect dispersion or cause hazardous by-products.

    Industry compliance standards

    • EN 71-3:2019 Safety of toys – migration of certain elements (for pigments in children’s goods)
    • OEKO-TEX Standard 100 for textile colorant safety
    • Global Harmonized System (GHS) labeling and documentation for chemical producers
    • ISO 9001:2015 for colorant manufacturing QA/QC

    Typical usage ratio

    • 10–18% weight per weight for targeted dye synthesis batch
    • 15–80 kg per 1,000 kg of finished pigment, based on product color depth

    Downstream process integration

    • Feeds directly into diazotization or reduction stage under controlled conditions
    • Participates in azo coupling to achieve final chromophore
    • Reaction by-products removed by filtration and pH adjusting
    • Pigment paste concentrated and stabilized before mill dispersion

    Final product types

    • Industrial colorants for plastics and coatings
    • Textile dyes (direct and reactive types)
    • High-performance pigments for inks
    • Special effect colorants for polymers and resins

    4. Precursor for Specialty Monomer and Polymer Modifications

    Chemical engineering firms utilize 3-nitrobenzamide in the tailored modification of specialty monomers, enabling downstream chemoselective reduction or incorporation into benzamide-functionalized polymers. It serves as a controlled feedstock for introducing nitro or amide groups into polymer chains, enhancing material characteristics such as polarity, flame resistance, or UV stability. Quality systems in this segment require detailed batch records for each lot used in formulating advanced materials.

    Industry compliance standards

    • ISO 14001:2015 for environmental management during synthesis
    • ASTM D256 (for polymer mechanical performance validation)
    • RoHS Directive (2011/65/EU) for restrictable substances in electrical/electronic components
    • ISO 10993 for biocompatibility (if intended for medtech polymer routes)

    Typical usage ratio

    • 5–22% mol of monomeric feed depending on desired functionalization
    • 20–200 kg per 1,000 kg of specialized polymer product

    Downstream process integration

    • Feedstock for precursor monomer generation under batch or continuous flow
    • Subjected to controlled reduction for incorporation into reactive polymer blends
    • Initiates specialty polymer chain extension or crosslinking
    • Quality control performed post-polymerization for residual monomer

    Final product types

    • Benzamide-functionalized engineering plastics
    • Flame-retardant polyester or polyamide blends
    • Advanced UV-resistant coatings
    • Specialty elastomers for industrial sealing/fabrication
    Free Quote

    Competitive 3-Nitrobenzamide 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

    Understanding 3-Nitrobenzamide in Practical Chemical Manufacturing

    An Insider’s Perspective on 3-Nitrobenzamide and Its Role in the Industry

    Day in and day out, we see raw materials come in through one side of the facility, and carefully processed, high-purity chemicals leave through the other. One substance that gets more questions than most is 3-Nitrobenzamide. Anyone who’s handled synthetic intermediates in real production knows both its simplicity and its complexity. The work required to meet high technical standards comes from years of experience, not just compliance with external requirements.

    3-Nitrobenzamide holds a respected place in the array of specialty chemicals. Chemists recognize its structure as a benzamide ring bearing a nitro group in the meta position. This functionalization changes its chemical reactivity and physical behavior compared to ordinary benzamide. Year after year, the demand for 3-Nitrobenzamide has proven steady. Most requests come tied to pharmaceutical synthesis, dye intermediates, and selected research and development projects. Companies need stock they can trust, and our team knows what it takes to supply this product with consistent quality, right down to the tactile feedback when you scoop up a sample for a melting point test.

    Sticking to Technical Standards: Experience Matters More Than Theory

    In the manufacturing environment, talk about “technical grade” or “research grade” goes beyond marketing. Delivering consistent 3-Nitrobenzamide means using processes which eliminate off-color impurities, residual solvents, and trace byproducts—details that can vary batch to batch unless someone cares enough to check every stage. We’ve seen the headaches when competitors overlook these tolerance limits; a yellow tint here, a smudge of contamination there, and suddenly a whole downstream synthesis falls flat. Reliable 3-Nitrobenzamide leaves the reactor as pale crystals, passing through filter driers and controlled atmosphere storage until shipment. High purity standards—typically above 99% by HPLC—are not just fine print for us, they're daily targets.

    Over the last decade, we’ve utilized several models in our facility for producing 3-Nitrobenzamide, favoring continuous process improvements rather than sticking to old habits. Standard specifications match research and pharmaceutical requirements: melting point ranges, moisture and ash content, heavy metal traceability, and residual solvent profiles are tightly controlled. Batch records logging every reagent and temperature point let us trace variabilities and preempt problems—especially crucial for customers who file regulatory documents or require supply chain certification.

    3-Nitrobenzamide: Uses That Influence the Way We Manufacture

    The role 3-Nitrobenzamide plays for clients ultimately shapes how we produce and package it. Pharmaceutical manufacturers use it as an intermediate, which means that by the time it reaches their hands, it must conform to precise purity and trace contaminant tolerances. Any shortfall only surfaces later, showing up as impurities in final APIs or causing regulatory issues. Research groups use it to develop functional dyes and in biochemical applications. Any background contamination—whether polynitro impurities or trace acids—compromises their results and wastes weeks of effort. Our team keeps direct dialogue open with large-scale and boutique customers alike, noticing where subtle changes in production actually benefit end users.

    Unlike some of our bulk commodity products, 3-Nitrobenzamide requires careful batch scaling. It behaves differently than other nitroaromatic compounds. For instance, it shows lower thermal stability than certain dinitro analogs but demonstrates better solubility in specific organic solvents. Over the years, this has led us to swap out former solvent systems for safer, more environmentally responsible choices, without impacting the classic crystallization patterns that signal high purity.

    Key Differences: 3-Nitrobenzamide and Other Nitroaromatics

    Many overlook the unique behaviors shown by nitrobenzamide compared to nitroanisole, nitrobenzoic acid, or nitrophenol variants. Nitrobenzamide stays neutral under standard storage conditions and resists air oxidation well, making it more stable in sealed containers than nitrophenol intermediates. Its nitro group gives distinctive electrophilic activation, setting it apart in reactivity from plain benzamide—which does not react the same way in transformations like reduction, amide bond formation, or nucleophilic aromatic substitution.

    We get requests for close analogs: sometimes clients seek nitrobenzoic acid for easier solubility in basic water; others want dinitro derivatives for higher reactivity. 3-Nitrobenzamide occupies a precise spot in the spectrum—it hits the balance between reactivity and stability, avoiding excess volatility while supporting diverse chemical transformations. Our staff understands these subtleties and regularly adjusts purification approaches to reflect the needs of the application, not just boilerplate requirements.

    Storage, Safety, and Handling: Why Real-World Knowledge Trumps Theory

    Practical handling knowledge comes from years of loading, storing, and sampling 3-Nitrobenzamide. Although its hazard profile is moderate compared with some nitroaromatics, dust can still irritate; so proper PPE and dust collectors are standard on our lines. We’ve learned, through hard knocks, that temperature swings during warehouse storage can promote caking or minor impurity drift—so, climate control became non-negotiable for keeping every batch stable and within specification.

    Shipping to customers who operate across continents brings challenges. Seasonal humidity changes or shipping delays threaten to affect quality. By packaging in multi-layer containers with sealed moisture barriers, we catch issues before they emerge at the client’s site. Many production managers value not just chemical purity but also the physical form’s stability during transit. Our feedback loop with long-term users led us to standardize these precautions; they’re based on real incidents rather than textbook case studies.

    Responsible Manufacturing Practices: Compliance and Transparency

    Regulatory standards for specialty chemicals like 3-Nitrobenzamide keep rising, especially in pharmaceutical and agricultural sectors. In our plant, all runs are tracked with full chain of custody from raw material arrival through finished batch release. GMP concepts inform our oversight but so does old-fashioned accountability. Staff on the production floor stick to written procedures, but also trust their knowledge—learned during countless reactor cleanouts and filter changes—when something needs an immediate fix.

    For clients preparing filings for regulatory review, traceable records and complete material characterizations make the difference. Our QA team responds to requests for analytical data, from spectrographs to LC-MS results, with a heavy focus on reproducibility. These expectations grow stricter every year, especially as international agencies harmonize stringency. Facilities that cut corners on documentation might save time, but the cost comes back in product recalls or persistent supply disruptions.

    Meeting Application Challenges Head-On: Real Stories, Real Solutions

    Every so often, we encounter a synthesis bottleneck or an unusual customer requirement that pushes our team to revisit the fundamentals. Once, a partner needed 3-Nitrobenzamide at a unique particle size range for microfluidic research. By fine-tuning crystal growth rates during the slow cooling phase, we delivered a product matching their specifications, helping them avoid costly post-processing. Other times, we discover that a subtle change in trace impurity levels causes downstream color changes in dye products, spurring us to overhaul part of the isolation step until the difference vanishes.

    Handling scale is another ongoing challenge. Small research orders are relatively easy; routine quality checks catch most issues before shipment. Large industrial runs demand tighter scheduling and more frequent in-process testing, as a single variable can mushroom into major defects when multiplied across hundreds of kilograms. We consistently run test splits during larger batches—confirming each holds up against analytical standards—before combining the final lot.

    Innovation in Production: Tackling Modern Environmental and Safety Demands

    The chemical industry’s push toward greener production methods leaves no stone unturned, and specialty chemicals like 3-Nitrobenzamide are no exception. For years, standard processes involved aggressive nitration reagents and hazardous waste streams. After reviewing internal incident records, our site adopted containment upgrades and switched to less hazardous nitrosating agents. We invested in advanced scrubbers and secondary containment to noticeably cut emissions and accidental releases.

    Regular upgrades to the process pay off in cleaner workspaces and fewer complaints about odors or dust. Our solvent recovery system reclaims nearly all spent organics, minimizing chemical footprints and reducing hazardous waste shipments per ton of product completed. These methods lower risk and also keep utility costs in check—a benefit not just for us but for anyone downstream in the supply chain, who now faces less regulatory scrutiny when using our product.

    Continuous Improvement Driven by Customer Feedback and Industry Change

    Much of the know-how behind our 3-Nitrobenzamide supply comes straight from dialogue with users. Over the years, research groups supplied analytical feedback that led us to trim certain impurity profiles and adjust final drying conditions. Sometimes, production chemists from client sites visit our facility, walking through the process and comparing notes. We’re always open to changing parameters—switching to a purer recrystallization solvent, upgrading drying technologies—if it means fewer headaches for scientists and analysts relying on our output.

    Supply chain disruptions have tested us in recent years. Raw material shortages, transportation bottlenecks, and price swings forced us to double-check inventory tracking and purchasing agility. By keeping strong ties with primary raw material providers, we cushion clients from upstream volatility that could otherwise impact their projects. Our policy of holding buffer stocks pays off whenever markets tighten; having consistently available product beats scrambling for spot-market solutions.

    Transparency in Sourcing and Batch Authentication

    Trust depends on more than published guarantees or standard certificates. Fielding questions directly from clients about origin, batch traceability, or previous analytical deviations, we know that openness pays off. Every lot comes with a signed analytical report generated from dedicated in-house instruments—sometimes even incorporating customer-specified methods. If a client requests a re-test or supplementary documentation, our team acts immediately, often providing digital scans of logbooks or instrument printouts to confirm values.

    We also keep sample retention sets for every manufactured lot, making sure clients can access re-test material when necessary. This approach—based on concrete, real-world practice—builds resilience on both sides of the transaction. Long-term clients appreciate this: many have returned during tight market years, specifically citing dependability and openness as reasons for repeat purchases.

    Addressing the Full Product Lifecycle: End-of-Use and Disposal Guidance

    After 3-Nitrobenzamide leaves our plant, it finds its way across many value chains. Some ends up further processed into complex organic molecules, much destined for pharmaceutical R&D. While most customers possess deep chemical knowledge, we continue to offer practical advice on end-of-use procedures, emphasizing compliance not just for safety but for peace of mind. Instructions for safe waste collection and guidance on neutralization are communicated clearly, sidestepping the hint of legalese that so often muddies standard datasheets.

    We’ve adopted an “open book” approach regarding disposal, helping clients connect with certified waste handlers or explore process options for solvent recovery. Over the years, shared experiences from other customers have informed our practical recommendations and sometimes even shaped in-house guidelines.

    Adapting Packaging for Real-World Demands

    Pack-out choices spring from the actual conditions our customers face, not a generic catalog. Some production chemists need kilo packs for bench-scale R&D, while plant operators order drums for bulk manufacturing. We respond by offering several options: small bottles fitted with tamper-evident seals for fine analytical work, and industrial drums lined with moisture-protective films for extended storage. Transport durability ranks high on our priority list, as mishandling can threaten product integrity more than most realize.

    Our logistics crew regularly reviews customer incident logs, identifying and fixing the rare but costly instances of caking, moisture ingress, or accidental puncture. By reporting even minor packaging hiccups, our reputation for reliability extends beyond the lab bench and into the warehouse.

    The Road Ahead: Lessons Learned Delivering 3-Nitrobenzamide

    Every kilogram of 3-Nitrobenzamide we produce reflects more than simple chemistry; it draws on a cumulative history of pragmatism and direct problem-solving. Modern chemical manufacturing means more than formulas and batch records. Each improvement learned from the production line, each email from a frustrated or delighted client, and every shift adjustment designed to comply with regulations or anticipate new ones shapes a better product for the next order. We approach 3-Nitrobenzamide not just as a commodity but as a specialty product, with its own quirks, standards, and challenges that distinguish it from close analogs. Our commitment to clients runs deeper than specifications: it is grounded in real accountability, transparency, and a hands-on willingness to adapt.