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HS Code |
325253 |
| Cas Number | 2835-77-0 |
| Molecular Formula | C13H11NO |
| Molecular Weight | 197.23 g/mol |
| Appearance | Yellow crystalline powder |
| Melting Point | 56-58°C |
| Boiling Point | 375.3°C at 760 mmHg |
| Density | 1.18 g/cm3 |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Synonyms | 2-Aminodiphenylmethanone; o-Aminobenzophenone |
| Pubchem Cid | 118121 |
| Refractive Index | 1.669 |
| Storage Conditions | Store in a cool, dry place, tightly closed |
As an accredited 2-Aminobenzophenone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 250g of 2-Aminobenzophenone is packed in a sealed, amber glass bottle with a secure cap and labeled for laboratory use. |
| Shipping | 2-Aminobenzophenone is shipped in tightly sealed containers, protected from moisture and light. It is transported as a hazardous chemical, following relevant regulations, with appropriate labeling and documentation. The packaging ensures minimal exposure and spillage risk, and temperature conditions are monitored to prevent decomposition or degradation during transit. |
| Storage | 2-Aminobenzophenone should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from direct sunlight, heat, and sources of ignition. It should be kept separate from strong oxidizing agents and incompatible materials. Properly label the container and restrict access to trained personnel. Use appropriate personal protective equipment when handling and storing the chemical. |
Applications of 2-Aminobenzophenone in Industrial ManufacturingAs a primary manufacturer specialized in aromatic ketone intermediates, we supply 2-aminobenzophenone to industrial partners operating in high-value synthesis sectors. Below, we outline the direct applications of this material in select downstream industries where its properties and reactivity provide clear benefits in regulated, specification-driven formulations and continuous manufacturing processes. 1. Pharmaceutical Intermediate SynthesisOur 2-aminobenzophenone serves as a crucial building block in the multi-step synthesis of various active pharmaceutical ingredients (APIs), particularly within the classes of non-steroidal anti-inflammatory drugs and antihistamines. Manufacturers in this segment utilize this intermediate in advanced coupling and cyclization stages, often requiring controlled conditions and strict traceability throughout GMP pipelines. Industry compliance standards
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2. Dye and Pigment ManufacturingChemical dye houses and pigment producers employ our 2-aminobenzophenone as a key intermediate in the synthesis of specialty benzophenone-based dyes, including disperse, acid, and solvent dyes. Its aromatic and amine functionalities enable efficient coupling and chromophore extension to achieve target hues, purity, and stability for application in plastics and fiber coloration. Industry compliance standards
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3. UV Absorber Additive ProductionManufacturers of ultraviolet (UV) absorber additives draw on 2-aminobenzophenone as a precursor in the synthesis of benzophenone-derivative light stabilizers, widely implemented in polymer masterbatches for plastics, coatings, and adhesives. This use is dictated by the material’s ability to provide both amine and ketone functionalities for subsequent etherification or sulfonation reactions, critical for developing tailor-made UV-protective agents. Industry compliance standards
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4. Agrochemical SynthesisWe supply crop protection and agrochemical formulators with 2-aminobenzophenone, utilized as a core intermediate in synthesizing selective herbicides and fungicides. Its structure enables targeted functionalization, supporting cost-effective production of active ingredients used in regulated agriculture markets, where impurity profiles and traceability are monitored stringently. Industry compliance standards
Typical usage ratio
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Bringing new compounds to the market often feels like building a bridge piece by piece—every piece counts. 2-Aminobenzophenone stands out in our lineup because so many downstream processes rely on its consistency. As a direct manufacturer, we pay careful attention to each step in the synthesis and purification. The primary structure—a benzophenone with an amine group ortho to the ketone—creates a backbone valued across fine chemical production, especially as a scaffold for pharmaceutical intermediates, dye-making, and specialty polymers.
What we ship out isn’t just powder in a drum. Each batch of our 2-Aminobenzophenone, CAS 2835-77-0, undergoes scrutiny well beyond standard specs. We regularly hit a purity above 99%, checked by HPLC, because we know trace contamination leads to downstream headaches: off-specification APIs, unstable dye lots, or gummed-up reactors. Consistency in melting point, typically between 110 and 114°C, helps formulators avoid guesswork. Bulk density, color, and moisture content may look minor but, in practice, can cause real disruptions if they aren’t tightly managed.
Sourcing 2-Aminobenzophenone directly from a chemical plant provides a kind of transparency hard to find elsewhere. Our production lines run on robust process control—automated dosing, modern filtration—making possible tight control over parameters like amine content and residual solvents. These matter; pure starting materials often make the difference between success and troubleshooting marathon sessions in a plant.
In our experience, formulators in pharmaceutical R&D routinely reach for 2-Aminobenzophenone as a versatile intermediate. Its amine function reacts cleanly with acid chlorides or isocyanates, building more complex molecules. Medicinal chemists like its adaptability for coupling reactions and heterocycle syntheses. We’ve seen it used to access benzodiazepine scaffolds and to prepare UV-active reporter groups in analytical chemistry.
Dye makers tell us they need predictability in chromophore synthesis. The presence of an ortho-amino group opens doors for developing novel azo dyes, especially those demanding chemical stability. Specialty polymer producers appreciate the amine functionality when incorporating the molecule into backbone modifications. Because our batches keep impurities low—especially trace aldehydes and halides—the polymers gain a cleaner profile with fewer color defects and inconsistent curing.
Plenty of benzophenone derivatives circulate on the market. 4-Aminobenzophenone or regular benzophenone show up in similar contexts, but subtle differences change everything at the production scale. The ortho orientation of the amine in 2-Aminobenzophenone changes its chemical reactivity: nucleophilic addition and substitution take different paths, and side reactions involving ring closure or condensation can become significant unless the starting material is made right. This layout on the aromatic ring delivers access to meta- and para-substituted analogs only by awkward detours, making 2-Aminobenzophenone indispensable for some syntheses.
In practice, differences in substitution pattern mean more than textbook examples. In our early days, we tried switching to 4-Aminobenzophenone for a series of dye syntheses. Yields dropped, colors shifted, and purification dragged out for days with more byproducts. In another case, a customer using regular benzophenone as a starting point for an active compound reported lower throughput due to less favorable reaction kinetics. From the process side, we saw that 2-Aminobenzophenone brings faster conversion, more predictable performance in coupling reactions, and—because we control residual water—fewer issues with hydrolysis or unwanted side chains.
Reliability and repeatability form the groundwork of safe production, especially on the plant floor. It takes more than a spec sheet to deliver this. Our experience has shown that batch-to-batch inconsistencies—sometimes as minor as a moisture content swing of half a percent—can knock a production line out of alignment. We’ve worked at controlling every variable: starting raw material quality, reaction temperature, filtration, drying cycles, and packaging under inert gas. Each step leaves fingerprints in the quality of the final compound.
Some manufacturers cut corners by reusing solvents or running low-yield processes with inconsistent equipment. The result is often variable purity and contamination that won’t show up until someone tries to scale up or isolate trace products. Our process uses dedicated reactors, automated solvent delivery, and inline monitoring to prevent batch contamination and cross-reactions. Chemical waste is managed on-site, so there’s never a risk of cross-trace from cleaning solvents or previous production runs. We can demonstrate tight hold on heavy metal content and organic byproducts, helping pharmaceutical customers streamline their regulatory submissions.
End users ask for traceability now more than ever. In our years supplying 2-Aminobenzophenone, we’ve learned that full in-house manufacturing answers routine audits, unexpected investigations, and the invisible threat of counterfeit or off-grade product on the market. We control every kilogram from raw materials to the final seal. Each shipment carries certificates validated by internal and third-party labs. Buyers receive not just a product but a documented chain that makes regulatory filing or process transfer straightforward.
The market landscape changed after several global supply disruptions. Customers who once sourced 2-Aminobenzophenone through layers of distributors started experiencing longer lead times, rising batch rejections, and even vanished suppliers. Direct manufacturing has helped us keep contracts running even in tight spots. We maintain a buffer stock of critical raw materials and invest in early warning for supply chain bottlenecks. Routine preventive maintenance and staff training make our plant resilient to sudden orders or shifting regulatory demands. That steadiness can’t be imitated just by reselling chemicals bought elsewhere, and many end users have come to appreciate the difference.
Some of our customers operate under cGMP conditions for active pharmaceutical ingredient production. Others must meet strict REACH or TSCA guidelines for environmental safety. The way 2-Aminobenzophenone is manufactured can make or break compliance. Our in-house quality system means we retain full documentation for every batch, including genetic traceability of starting materials, all test results, and process logs going back at least a decade. Every sample for QC is barcoded and monitored, so we can answer specific customer investigations efficiently.
The choice of synthesis process impacts both the environment and end-user safety. We specifically avoid reagents that leave persistent halide or heavy metal residues. Our purification protocol selectively removes short-chain aldehydes, which appear at undetectable levels in production-scale runs but trigger potent responses in dye formulations and some pharmaceutical routes. Because we avoid cross-contamination, customers report fewer out-of-spec events during formulation or scale-up.
We hear a lot about price fluctuations and competitive pressures. Some buyers believe the main difference across suppliers comes down to cost. In our experience, hidden costs emerge only after poor-quality 2-Aminobenzophenone shows up in downstream yields, increased waste, extra purification steps, or, worse, a failed regulatory inspection. We spend more on proactive maintenance, dedicated staff, and third-party testing for good reason. Over decades, it’s this depth that allows sustained supply with minimum surprises.
Our products aren’t commoditized, and we resist shortcuts that only push costs downstream. We openly share lab reports, stability data, and shelf life metrics because process engineers and chemists need this to design robust processes. We maintain open lines with users to catch quality drift before it becomes a crisis. By keeping control of the full lifecycle, we can respond to new requirements or sudden production changes without blind spots or excuses.
2-Aminobenzophenone doesn’t always behave like other amine-bearing benzophenones. Its solid crystalline state poses challenges in large-scale storage, and it’s sensitive to light and moisture. Direct packaging on-site in sealed, light-blocking drums prevents early degradation and limits hydrolysis. We monitor packaging integrity in the warehouse and transit. We advocate for cool, dry storage, and we can advise on specific humidity and temperature limits based on the needs of each facility.
End users benefit when the same lot characteristics are reproduced in every drum. We built feedback into our system by tracking issues that arise during manufacturing, purification, or end-user application. For instance, we installed real-time sensors to flag anomalous moisture readings in storage; a small step, but it prevented a full batch from going out-of-spec at a critical customer site.
Much of the innovation in dyes, drugs, and polymers comes from small changes at the molecular level. Our technical support team collaborates with R&D customers to tailor input parameters to unique product requirements. We routinely participate in troubleshooting sessions, performance reviews, and scaling exercises. We’ve seen startups struggle with bench-scale samples that behave differently in pilot or production runs—fine for a few grams, but scale brings new headaches. By delivering technical documentation, reproducible lot-to-lot quality, and process feedback, we support both the discovery phase and routine industrial production.
We listen not only to large-volume buyers but also to academic labs figuring out next-generation pharmaceuticals or sustainable materials. Early engagement helps us preempt issues like process incompatibility, solubility concerns, or equipment fouling. Feedback from users has led to improvements in handling, packaging, and product documentation; this continuous loop lets us adapt while maintaining our manufacturing base.
Today’s chemical supply chain faces scrutiny on energy use, emissions, and waste. We recognize the expectations set by both regulators and customers. Over recent years, we reengineered our process for 2-Aminobenzophenone to cut solvent emissions, recover energy, and reduce raw material waste at the source. Production waste is captured and treated on-site, with ongoing investments in waste valorization and recycling technology.
Customers increasingly ask about our environmental profile—carbon footprint, regulatory compliance, supply chain resilience. Our approach relies on documented best practices, routine audits, and transparent reporting. Sustainable manufacturing doesn’t just meet current regulations; it insulates long-term contracts against future policy changes. This future-proofing goes hand-in-hand with investment in staff training, digitalization, and process improvement.
Reliability often gets measured in decades, not quarters. Long-standing customers regularly point to stable product quality, consistent documentation, and the ability to handle special requirements. Whether it’s a periodic audit, emergency delivery, or new application support, we keep communication open and response times short. This level of partnership emerges only with genuine commitment to direct manufacturing.
From pharmaceuticals to pigments, the underlying trust stems from repeatable quality. We’re proud that several of our customers have stuck with us through periods of market turmoil and changing regulations. Some only found out the true meaning of “manufacturer” when their former distributors ran out or disappeared under scrutiny. For these users, the assurance that every lot of 2-Aminobenzophenone is documented, traceable, and supported matters as much as any technical property.
The chemical industry doesn’t stand still. Shifting market dynamics, regulatory updates, and new discoveries keep everyone moving. We devote resources each year to upgrading our analytical labs, automating process control, and refining purification techniques. These investments aren’t just about machinery—all staff undergo regular training, and we run trial batches for new raw materials or changes in regulatory requirements.
We belong to trade associations and technical working groups, sharing our experiences and learning from peers. Regular benchmarking lets us compare our outcomes on energy input, yield, and product purity. These efforts translate into improved products, shorter lead times, and better support for customers tackling tomorrow’s technical challenges.
Producing 2-Aminobenzophenone isn’t just a matter of meeting a technical spec; it’s about ensuring that every user receives a product that performs as intended, every time. By committing to deep in-house production, our team brings together years of experience, dedication to safety and compliance, and a willingness to support our customers in all stages of their product lifecycle. The chemical world runs on trust as much as on molecules, and we continue to build that trust with every lot that leaves our plant.