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2-Aminobenzophenone-2'-Carboxylic Acid

    • Product Name 2-Aminobenzophenone-2'-Carboxylic Acid
    • Einecs 236-417-2
    • 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

    575457

    Iupac Name 2-amino-2'-carboxybenzophenone
    Molecular Formula C14H11NO3
    Molecular Weight 241.24 g/mol
    Cas Number 5325-43-1
    Appearance Yellow solid
    Melting Point 215-217°C
    Solubility Slightly soluble in water, soluble in organic solvents
    Purity Typically ≥98%
    Synonyms 2-Amino-o-benzoylbenzoic acid
    Smiles C1=CC=C(C(=C1)C(=O)C2=CC=CC=C2N)C(=O)O
    Storage Conditions Store at room temperature, in a dry, cool place
    Ec Number 226-195-7

    As an accredited 2-Aminobenzophenone-2'-Carboxylic Acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Brown glass bottle, 25g net weight, tightly sealed with screw cap, labeled with chemical name, CAS number, hazard symbols, and storage instructions.
    Shipping 2-Aminobenzophenone-2'-Carboxylic Acid is shipped in tightly sealed containers, protected from light, moisture, and incompatible materials. Packaging complies with chemical safety regulations and includes proper labeling and documentation. Transport typically occurs via ground or air freight, following guidelines for non-hazardous laboratory chemicals if applicable.
    Storage 2-Aminobenzophenone-2'-Carboxylic Acid should be stored in a tightly sealed container in a cool, dry, and well-ventilated area, away from direct sunlight, moisture, and incompatible substances such as strong oxidizers. It is recommended to keep the container tightly closed when not in use and to store it at room temperature. Proper labeling and secondary containment are advised for laboratory safety.
    Application of 2-Aminobenzophenone-2'-Carboxylic Acid

    Applications of 2-Aminobenzophenone-2'-Carboxylic Acid in Industrial Manufacturing

    As a direct manufacturer specializing in the large-scale synthesis of 2-Aminobenzophenone-2'-Carboxylic Acid, we focus on its proven industrial roles. This intermediate supports specific downstream sectors, where performance, quality, and regulatory standards dictate precise integration. Below we outline several distinct application scenarios, each defined by practical formulation data, recognized compliance requirements, and real-world process usage, supporting our commitment to consistent quality and traceability for industrial clients worldwide.

    1. Specialty Pigments for Automotive Paints

    Our material serves as a core intermediate in the synthesis of high-performance specialty pigments developed for automotive coatings. Leading manufacturers value its unique aromatic structure, which contributes to pigment stability under prolonged UV exposure and chemical stress in automotive finishes. The controlled introduction of this compound ensures hue consistency and fade resistance in color formulations subjected to rigorous use environments and weathering cycles.

    Industry compliance standards

    • ISO 9001:2015 (Quality Management for Coatings)
    • REACH Regulation (EC) No 1907/2006 (Chemical Registration)
    • Directive 2004/42/EC (VOC content in paints and varnishes)
    • Automotive OEM internal material approval protocols (e.g., GM, VW, Toyota)

    Typical usage ratio

    • 1.2%–3.5% by weight in pigment intermediate synthesis, adjusted based on pigment shade and concentration requirements in the coating system

    Downstream process integration

    • Introduced at the condensation reaction stage during pigment intermediate synthesis, followed by filtration and purification before dispersing in base paint blends

    Final product types

    • OEM automotive topcoats
    • Refinish paints for the automotive aftermarket
    • Commercial vehicle exterior coatings
    • High-durability decorative automotive stripes and emblems

    2. Pharmaceutical Intermediate for API Synthesis

    2-Aminobenzophenone-2'-Carboxylic Acid is a recognized building block in the production of certain active pharmaceutical ingredients, especially in the area of non-steroidal anti-inflammatory agents and antihistamines. Process chemists value the molecule’s carboxylic and amino functional groups for controlled derivatization and condensation reactions, supporting efficient synthesis routes and consistent batch-to-batch quality for regulated drug manufacture.

    Industry compliance standards

    • ICH Q7 (Good Manufacturing Practice for Active Pharmaceutical Ingredients)
    • USP–NF (Relevant monographs for intermediates and APIs)
    • European Pharmacopoeia (Ph. Eur.) standards for chemical purity
    • 21 CFR Part 211 (US FDA cGMP for Finished Pharmaceuticals)

    Typical usage ratio

    • Variable: precisely stoichiometric based on target API synthesis, usually 0.95–1.05 equivalents relative to the next key reactant; process control ensures full conversion with minimal excess

    Downstream process integration

    • Charged during the main coupling or condensation stage in multi-step API synthesis under validated reaction conditions, followed by purification and analytical QC before the final API formation

    Final product types

    • Bulk APIs for anti-inflammatory drugs
    • Intermediate blocks for H1 antihistamines
    • Pharmaceutical contract-manufactured intermediates exported for downstream formulation

    3. Fluorescent Tracers for Industrial Leak Detection

    This compound’s aromatic structure serves as a crucial anchor for fluorescent tracer molecules used in non-destructive leak detection within industrial equipment. Product engineers rely on the compound’s structural compatibility for generating stable, high-intensity tracers deployed in high-pressure systems. Accurate dosage and process handling allow for repeatable detection performance without interference in sensitive operational environments.

    Industry compliance standards

    • ASTM D7047 (Spectrofluorometric Methods)
    • ISO 17025 (Testing laboratory quality for industrial diagnostics)
    • EPA Method 624 (Fluorescent tracer analysis in water samples)
    • RoHS/ELV (for tracers used in automotive and electronics engineering)

    Typical usage ratio

    • Approximately 0.2–1.0% by weight in tracer compound formulation; fine-tuned based on fluorescence intensity and matrix compatibility

    Downstream process integration

    • Used during the synthesis of the tracer molecule backbone, followed by post-synthetic dye modification and blending for injection into target systems (cooling circuits, hydraulic lines, pipelines)

    Final product types

    • Fluorescent leak detection dyes for industrial hydraulics
    • Pipeline inspection tracer solutions
    • Automotive system leak test fluids

    4. Photoactive Monomers in UV-Curable Ink Systems

    The compound functions as a specialty monomeric photoactive agent within certain UV-curable ink resin formulations, contributing to tailored absorbance and polymerization profiles. Industrial ink producers incorporate it for its impact on cure speed and color density stability, enabling the production of high-precision inks for digital and offset printing under controlled plant environments.

    Industry compliance standards

    • ISO 2846-1 (Color and Transparency for Inks)
    • Swiss Ordinance on Materials and Articles (SR 817.023.21, suitability for printing inks in contact with food packaging)
    • Good Manufacturing Practice Regulation (EU) No 2023/2006
    • SGS/Intertek testing protocols for residual monomers and migration

    Typical usage ratio

    • 0.3–2.0% by weight in the monomer blend, adjusted during R&D scale-up to achieve specific photo-reactivity and cure profiles

    Downstream process integration

    • Added after the oligomer base preparation and pigment dispersion, incorporated prior to the photoinitiator and final reactor batch-up

    Final product types

    • UV-curable high-resolution digital printing inks
    • Specialty offset inks for commercial printing
    • Industrial marking and coding inks for packaging

    5. Synthesis Aid for High-Temperature Polyimides

    This raw material is deployed as a functionalized monomer precursor for high-performance polyimides, targeting applications such as flexible printed circuits, thermal insulation, and specialty engineering films. Compound’s molecular rigidity and electronic properties influence the final polymer’s glass transition temperature and dimensional stability, making it essential for meeting specification standards in sectors demanding sustained thermal resistance.

    Industry compliance standards

    • IPC-4101/41 (Base Materials for Rigid and Multilayer Printed Boards)
    • UL 94 (Flammability rating of polymeric materials)
    • RoHS 3 Directive (2015/863/EU) for electronics safety
    • ISO 9001:2015 for engineered polymer production

    Typical usage ratio

    • Consistently 3.5–7% by mole in the polyimide monomer feed, with process optimization according to end-use mechanical and thermal property requirements

    Downstream process integration

    • Fed into the polyamic acid synthesis reactor, prior to imidization via heat treatment conducted under inert atmosphere until the polyimide backbone fully forms

    Final product types

    • Flexible circuit base films
    • Thermal insulation tapes for electronics and automotive
    • Specialty molding resins for aerospace interiors
    • Dielectric coatings for microelectronics
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    Certification & Compliance
    More Introduction

    2-Aminobenzophenone-2'-Carboxylic Acid: A Practical Perspective from the Manufacturer

    True Value from Purposeful Production

    At the heart of our operation, a handful of products show up on the line year-round, and 2-Aminobenzophenone-2'-Carboxylic Acid holds a spot among them for good reason. Over decades of scale-up, adjustment, and fine-tuning, this molecule has proven itself central to many advanced syntheses in dyes, pharmaceuticals, and specialty intermediate streams. Our roots as a chemical manufacturer give us a closeup view—and we know just how often this compound gets bundled into more ambitious projects, where functionality and reliability solve problems quietly in the background. Many who work in pharmaceuticals or color chemistry cross paths with it, sometimes without even seeing its name on the final packing list. The key is in its versatile amine and carboxylic acid moieties, each one an anchor for streamlined downstream processes.

    The Substance in Focus

    2-Aminobenzophenone-2'-Carboxylic Acid earns its place by bridging functional groups and aromatic stability. With the solid reputation it has gained on the shop floor, the molecular backbone stands up to repeated scrutiny. Our product (CAS number known among chemists) comes as an off-white to pale yellow powder, refined and stable under normal conditions. Over years of overseeing production, we discovered that catching the right crystal size during cooling and filtration can shape its next reaction efficacy. Chemists who depend on high-purity feedstocks see the payoff whenever yields stay consistent, batch after batch, without surprise byproducts or slipping spectra.

    The exacting nature of many end uses—think medicinal chemistry or polymer additives—demands constant attention to both purity and trace metal analyses. Experience has taught us that consistency does not come from automated instruments alone. Every manufacturing run meets targeted specifications for purity by HPLC, with strict limits on related impurities, moisture, and trace residual solvents. This attention helps those on the receiving end focus less on chasing contaminants and more on their own innovations. Maintaining tight control of temperature and pH, and avoiding overexposure to air, has proven essential for safeguarding the amine’s activity and keeping the carboxylic acid group ready for efficient coupling.

    Manufacturing Realities in the Chemical Plant

    Running a chemical plant is as much about observation as calculation. In the early days, our managers insisted on sampling checkpoints at each stage—no shortcut has ever matched the value of a well-trained operator with the routine for spotting unwelcome side reactions. The classic synthesis starts with a precise acylation, making sure each run hits the right conversion before moving on to hydrolysis and tailored crystallization. A batch process offers more flexibility when handling smaller custom orders, while our continuous process line runs batches for major customers who rely on tighter timelines. From experience, steady agitation and cooling rates—along with robust waste handling of byproducts—set the difference between a clean crop of crystals and a sticky mass requiring tedious rework.

    Through hands-on oversight, downstream packaging avoids contact with humidity or sunlight, factors that can nudge even stable organic compounds toward degradation. Standard product packaging uses high-barrier liners sealed immediately in drums or bags, made for safe shipment to distant destinations. Warehousing, even for apparently simple products, benefits from monitoring ventilation, temperature, and moisture, ensuring years of shelf stability when stored in original containers. During shipping, experience has shown that vibration and temperature spikes undermine lesser packaging—trustworthy packaging remains a crucial but often invisible investment.

    Usage in Industrial and Scientific Synthesis

    Customers often approach us with a challenge: substitute compounds can struggle with reactivity or solubility, especially in custom drug design or dye synthesis. The unique structure of 2-Aminobenzophenone-2'-Carboxylic Acid—an aromatic scaffold, an amine at the para position, and a carboxylic acid opposite—offers a workhorse intermediate for building more intricate chemical frameworks. Medicinal chemists see value in its ability to undergo rapid amide coupling, forming stable peptide mimics or linker arms in bioactive targets. Dyestuff producers often mention the responsiveness of this compound in azo coupling, where it helps develop new pigment shades with more resilience against fading and washing.

    In our annual feedback meetings, pharmaceutical partners have praised the clean reactivity in peptide-ligation steps, where troublesome side products remain minimal. Synthetic polymer chemistry teams appreciate the controlled incorporation of the amine-carboxyl hybrid, using it to adjust backbone flexibility and solubility properties in advanced resins. Lab-scale users, focused on academic research, make use of its robustness when scaling tricky multi-step transformations, trusting that each delivered lot meets the NMR and MS profiles they expect. This broad adoption results from our ongoing conversations with process chemists: we respond with real-time adjustments to synthesis variables because production realities rarely conform to textbook scenarios.

    What Sets Our Product Apart from Alternatives

    Other amine-benzoic acid derivatives circulate through the market, but those differences matter when production goals require predictable routes and efficient conversions. We have examined dozens of related compounds over the years, noting that variations in aromatic substituents bring altered solubility or limit reactivity. Some products may offer a similar amine-carboxylate framework but end up cumbersome in multi-step pharmaceutical synthesis—yielding more byproducts, slowing purification, or introducing hard-to-purge isomers.

    2-Aminobenzophenone brings useful hydrophobic balance; its extended aromatic backbone allows ready dissolution in common polar aprotic solvents favored by advanced synthesis groups. Several attempts to replace this molecule with smaller analogues resulted in either sluggish reaction rates or lower overall yields, especially where a strong aromatic anchor is needed for subsequent functionalization. In dye chemistry, alternative aminobenzoic acids sometimes fail to develop the same intense hues or stability in exposure tests.

    A recurring case comes from partners in high-throughput pharmaceutical development. Comparing 2-Aminobenzophenone-2’-Carboxylic Acid to simpler ortho- or para-aminobenzoic acids, teams often report trouble achieving desired coupling rates or face purity issues related to embedded byproducts. Those choosing the product directly at the site of synthetic bottlenecks—especially when working with peptide-bound scaffolds—have shared that our compound provides a balanced profile for successive transformations, leading to fewer intervention steps and easier downstream purification.

    Quality Assurance Built on Practice, Not Just Paper

    Our commitment to quality relies on practical methods, not just certificates. We learned early on that meeting regulatory and customer standards means going beyond what printed documents can show. We regularly audit our process from raw material checks, through in-process monitoring, to final batch QA. Our on-site analytical lab runs detailed purity checks (HPLC and NMR, among others), but each test is double-checked by experienced chemists for spectral anomalies or outlier impurity peaks that might slip past automated routines.

    Packaged product never leaves the plant without confirmed results for purity, moisture, and stability, plus a manual signoff from a supervisor who’s spent years on the production line. Years of feedback push us to maintain not just the headline specification, but also the subtleties that matter downstream: low water content, absence of polymorphic shifts, and trace metal analyses that catch contaminants before they ever reach warehouse shelves. Each customer inquiry leads to further tuning—real world issues, such as solubility concern, buffer incompatibility, or unforeseen production hurdles, guide adjustments in real time.

    Meeting Regulatory and Environmental Benchmarks

    Manufacturing at scale brings responsibility to both compliance and stewardship. Over the years, regulatory compliance became a core component of our workflow, not just a formality. International customers expect documentation—certificates of analysis, REACH registration, and support for regional guidelines. In practice, achieving these marks means careful tracking of starting materials, full traceability through batch records, and ongoing training for the plant team.

    Environmental standards continue to evolve, and experienced plant operators spot potential risks in solvent handling, waste stream management, and accidental release. We’ve built solvent recycling and recovery into our production, reducing both cost and liquid discharge. Suppliers know we regularly audit shipments for purity and sustainability, tying our own success to their reliability. Our waste treatment systems have been upgraded over the years to meet tougher limits on organics, so both neighborhood safety and global standards get upheld without compromise.

    Customer audits often bring fresh eyes to our site, and their regulators ask for more transparency each year. By tracking data at each production stage, we stay ready for both routine inspections and unannounced reviews, showing not only compliance but also a deeper, long-term investment in responsible practice. That commitment lowers risk for all downstream users, serving both product quality and environmental protection.

    Supply Reliability Backed by Experience

    Supplies of specialty intermediates can fluctuate, especially as global markets move and new competitors emerge. Our partners trust us not just for product, but for the manufacturing stability that comes from decades in the business. Over time, we adapted to unexpected interruptions—raw material price spikes, international shipping snarls, and changing rules for hazardous materials. Backup stock for critical precursors allows us to weather short-term market turbulence; we switch between batch sizes and flexible shift patterns as customer forecasts change.

    For high-purity and specialty grades, it takes experienced people to spot possible supply bottlenecks early and act decisively. Building close relationships with upstream suppliers and maintaining in-house reserves help us reduce unexpected delays. Many of our customers mention, during their own supplier reviews, that shipment consistency stands out as much as the chemical quality itself. They know our stock turns over quickly enough that each delivered lot arrives within tight shelf-life margins, avoiding the risk of aging product that may trouble quality-sensitive applications.

    Process Improvements and Continuous Feedback

    Few things drive advancement like input from real-world users. Over the years, feedback from process chemists and formulation specialists landed on our desks as hard-earned suggestions—sometimes a point about solubility, sometimes the request for a finer particle size or cleaner filtration. Each time, we return to the plant floor and challenge ourselves to match those needs with production updates.

    One memorable upgrade involved moving to a new filtration system after a pharmaceutical customer pointed out difficulty dispersing our powder in their pilot reactor. Shifting to a finer filter medium and adjusting drying protocols shortened their blending time and increased their batch yield by a measurable margin. Another routine arises from tuning the cooling ramps during crystallization steps, which helps guarantee consistent crystalline structure that dissolves predictably, even over extended transport times. Knowing that each modification ripples downstream, we communicate openly with our key partners before finalizing process changes, making sure adjustments actually solve the problem in practice.

    Serving a Knowledgeable and Demanding Community

    Those who buy and specify advanced intermediates know the stakes—unexpected impurities or solubility faults can dismantle months of work in a pharmaceutical or dyestuff lab. Trust forms not only with metrics and certificates but with direct conversations and longstanding track records. We listen to customers sharing their difficulties: heat or solvent limits in downstream reactors, batch compatibility with automation, on-the-fly changes based on market demand.

    Accepting that every lot ends up in a unique situation means we avoid a one-size-fits-all approach; our operators know the history behind each order, adjusting blend, pack size, or even grind as needed. We actively encourage open exchanges with both existing and prospective users, ensuring our product adapts to changing requirements, regulatory updates, and unpredictable global shifts.

    Future Pathways: Innovation Rooted in Practice

    Innovation draws from sustained exposure to challenges and successes. In our view, developing new intermediate molecules or improved forms of 2-Aminobenzophenone-2’-Carboxylic Acid never happens in a vacuum. Most breakthroughs emerge from daily field reports rather than boardroom blueprints. Teams request more stable forms, easier handling, or greater compatibility with green chemistry protocols. Attention shifts as supply chains, regulations, and end-use technologies evolve.

    Investments in greener solvents, more efficient separation processes, and better waste minimization emerge as top priorities. Real stories from technical partners guide pilot programs on crystallization or reactivity, building on years of comparable case studies. Manufacturing expertise built over decades enables us to experiment quickly—testing small changes and scaling best outcomes, often in weeks rather than quarters. As global regulations and market expectations shift, we strengthen documentation and support, offering both technical and practical confidence to those who rely on us to keep their formulations running smoothly.

    Active Collaboration and Shared Problem-Solving

    Direct connections with customers often yield more practical improvements than any textbook recipe. Real needs, voiced by those with boots on the ground, set our agenda every production cycle. Collaboration extends from open technical conversations to shared pilot batches and mutual troubleshooting. Some customers prefer technical visits onsite to witness our operation firsthand and propose joint investigative work—these interactions result in product versions finely tuned for their specialty processes.

    Even seemingly minor requests influence our evolution: temperature ranges for optimal reactivity, solvent compatibility for patent filings, or alternate packing solutions for sensitive handling. Each adaptation, minor or major, finds a place in our ongoing effort to support both immediate and long-term needs.

    Looking Ahead: Confidence Gained from Experience

    Every customer, from multinational pharmaceutical groups to academic researchers, trusts 2-Aminobenzophenone-2'-Carboxylic Acid for its durability in synthetic tasks. Behind each delivered package sits a long record of technical learning, hands-on troubleshooting, and quiet improvement. The basis for supply confidence and continued advancement relies not on luck, but on the steady habits, feedback loops, and attention to detail built by generations of chemical manufacturers. Through honest engagement and an understanding of how this product performs in diverse, challenging environments, we continue to build partnerships rooted in mutual respect and practical knowhow.