|
HS Code |
219138 |
| Chemical Name | N-Benzoyl-4-Piperidone |
| Molecular Formula | C12H13NO2 |
| Molecular Weight | 203.24 g/mol |
| Cas Number | 3612-20-2 |
| Appearance | White to off-white crystalline powder |
| Melting Point | 91-94°C |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Density | 1.18 g/cm³ (approximate) |
| Purity | Typically >98% |
| Storage Conditions | Store in a cool, dry place |
| Synonyms | 4-Oxo-1-benzoylpiperidine |
| Smiles | O=C(N1CCC(=O)CC1)C2=CC=CC=C2 |
As an accredited N-Benzoyl-4-Piperidone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | N-Benzoyl-4-Piperidone, 100g, is packaged in a sealed amber glass bottle with a tamper-evident cap and hazard labeling. |
| Shipping | N-Benzoyl-4-Piperidone is shipped in tightly sealed, chemical-resistant containers, clearly labeled according to hazardous materials regulations. It is handled as a chemical reagent, packed to prevent leaks or contamination, and accompanied by safety documentation. Shipment complies with national and international transport guidelines for laboratory chemicals, ensuring safety and integrity during transit. |
| Storage | N-Benzoyl-4-piperidone should be stored in a tightly sealed container, kept in a cool, dry, and well-ventilated area, away from direct sunlight, heat, and sources of ignition. It should be protected from moisture and incompatible substances such as strong oxidizing agents. Store at room temperature or as recommended by the supplier, ensuring proper chemical labeling and safe access for authorized personnel. |
Applications of N-Benzoyl-4-Piperidone in Industrial ManufacturingAs a dedicated manufacturer of N-Benzoyl-4-Piperidone, we supply this intermediate to large-scale producers operating in the pharmaceutical, agrochemical, and fine chemical sectors. Each downstream industry integrates the product into specific synthesis or processing workflows to achieve regulatory-compliant, high-purity end products. 1. Pharmaceutical Active Pharmaceutical Ingredient (API) Intermediate SynthesisN-Benzoyl-4-Piperidone serves as an advanced building block in the multi-step synthesis of various piperidone-based active pharmaceutical ingredients, particularly in the segment of neuropharmacological and oncology drug development. Process chemists employ this intermediate via reductive amination, acylation, or cyclization reactions, depending on the target compound. The material’s purity profile and low residual solvents are critical to comply with stringent regulatory specifications for final API quality, driving manufacturers to implement close analytical control at each stage of API production. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Agrochemical Synthesis: Herbicide and Fungicide IntermediateIn modern agrochemical manufacturing, N-Benzoyl-4-Piperidone functions as a high-value intermediate for constructing heterocyclic scaffolds in selective herbicide and fungicide active ingredients. Agrochemical process lines require precise control of reagent ratios and thermal conditions in reaction vessels, as downstream catalytic reduction and coupling steps are highly sensitive to both material purity and water content. Professional QC teams perform release testing for trace by-product and residual solvent analysis according to agricultural standards, ensuring suitability for crop protection formulation blending. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Specialty Polymers and Engineering Resin ModifiersSpecialty polymer manufacturers incorporate N-Benzoyl-4-Piperidone into high-performance resin formulations intended for automotive, electronic, and aerospace applications. The compound functions as a monomer modifier to introduce rigidity, solvent resistance, or targeted reactivity into engineering plastics such as polyaramides and polyimides. Process engineers employ the material in controlled molar ratios during polycondensation or cross-linking reactions. Polymer QC teams monitor incorporation rates and ensure lack of extractable impurities, documenting compliance with end-use regulatory and mechanical property specifications. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Fine Chemical R&D: Custom Cationic Surfactant PrecursorsN-Benzoyl-4-Piperidone finds use in advanced fine chemical research and contract manufacturing as a unique piperidone core for the synthesis of custom cationic surfactants. Chemists in surfactant development programs introduce this compound into multi-step synthetic sequences to generate specialized ammonium or pyridinium derivatives, especially for use in catalysis, phase transfer, or industrial detergents. Exact ratios and process conditions vary based on surfactant chain functionalization requirements. Comprehensive analytical documentation accompanies each lot to facilitate transparency and regulatory audits at client sites. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
|
Competitive N-Benzoyl-4-Piperidone 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
Flexible payment, competitive price, premium service - Inquire now!
In our manufacturing facilities, days begin early with a look at the reactors and an eye on the upcoming batch—often, that batch features N-Benzoyl-4-Piperidone. Every step, from approving raw materials to packaging, is carried out with years of experience and attention to authentic chemical quality. Today's markets move quickly, but the commitment to precise chemistry remains steady. Let’s put the microscope on N-Benzoyl-4-Piperidone: what it is, how we craft it, its practical applications, and how it sets itself apart from similar molecules.
N-Benzoyl-4-Piperidone carries a structure rooted in piperidone chemistry, specifically substituted at the nitrogen with a benzoyl group. The formula and structure give the molecule its unique behavior in a laboratory or industrial setting. Our facility handles this compound daily, understanding that the value comes from both purity and lot-to-lot consistency. The crystalline powder we produce appears white or off-white, and the significance of appearance goes beyond the superficial. Color signals absence of degradants and careful process control. Each time the white powder pours out, our teams recognize the dozens of critical control points already behind it.
Daily operations in chemical production revolve around tight process controls. The synthesis of N-Benzoyl-4-Piperidone typically involves a condensation route, using select anhydrous and high-purity reagents. Skilled hands follow process flow diagrams refined over years. Every glass-lined reactor run is traced, with in-process checks on temperature and pH. Final crystallization steps separate the pure product from mother liquors efficiently. The yield from every single run is measured, archived, and compared to long-term performance. This feedback loop means we aren’t just relying on theory—we pull data directly from our shop floor to keep improving.
Quality checks don’t end at the reactor. From the lab bench, our analytical chemists use NMR spectra, HPLC purity readings, melting point determination, and water content inspection. There's a specific scent to confidence around the lab once the batch records show everything lines up with the best performance. These aren’t theoretical numbers on a page; these are real samples handled by chemists and re-checked by peers. Bad batches don’t find their way to customer shelves because we see the entire journey, starting with every kilo of raw input.
Day after day, the product emerging from our process builds a mountain of experience. It doesn’t take many batches to recognize true-to-model N-Benzoyl-4-Piperidone by its flow, density, and reactivity. Trace solvates or process byproducts signal an incomplete run, and sharp lab practice cuts off issues in the bud.
Typical batches reach closely monitored standards for appearance, purity (usually reaching or exceeding 99%), and minimal residual solvent. Unlike formulas drifting in strength, our focus brings in lots that fit inside narrow purity windows. Water content is tightly managed. There’s practical know-how in getting the crystals to dry properly. Humidity on the shop floor calls for monitoring, and even the packaging process looks different in a busy season—no corner gets cut in those lessons learned.
Our model for this compound emphasizes scale-up batch repeatability. Years spent scaling from lab flasks to large vessels taught us how to adjust temperature and agitation, which sometimes change a product’s qualities. We avoid fudge factors and record real data, because factories don’t listen to speculation.
The real value of N-Benzoyl-4-Piperidone shows up in its usefulness for synthesis. This compound sits on the workbenches of chemists developing pharmaceutical intermediates, active ingredients, and research targets. Its structure offers the right functional handle for downstream modifications such as reductive aminations, substitutions on the ring, or further acylations.
Developers appreciate the opportunities enabled by the ketone and benzoyl functionalities. These features make it a suitable intermediate in the assembly of bioactive molecules, CNS-active agents, and enzyme inhibitors—settings that demand both creativity and reliability from a chemical supplier. Our technical specialists have supported projects from early development through to process optimization, stepping in when questions arise about solubility, stability, or reaction compatibility.
Experience taught us that scale matters: research quantities demand flexibility, but moving into pilot and plant-scale runs calls for predictability. We communicate directly with formulation scientists who need assurance that their raw material supply will not introduce unnecessary variation. A customer focusing on medicinal chemistry values a quick and clear technical response, and we provide just that, backed by firsthand production experience rather than guesses from catalogs.
Chemical manufacturers face shelves filled with similar-seeming compounds, all with subtle but critical differences. N-Benzoyl-4-Piperidone stands out due to its substitution pattern. Some piperidones carry acyl or alkyl groups in different positions, which shifts their reactivity, solubility, or downstream modification options. Even the length of the alkyl linker or placement of the carbonyl affects how the molecule works as a synthetic handle.
Our production history covers a range of related compounds—N-acetylpiperidones, unsubstituted piperidones, various benzoylated amines. It quickly becomes clear to anyone on the factory floor that small changes in structure can mean much more involved process adaptations, new hazards, or unexpected stability profiles. N-Benzoyl-4-Piperidone covers a sweet spot: it resists hydrolysis under typical handling, stores easily under dry conditions, and maintains purity through transportation to distant customers.
Chemists who have tried substituting alternative benzoylated derivatives sometimes reach out after finding poor yields or impurity formation. We share practical insight from our own campaigns: choosing this product means less risk of side-reactions that compete or fail to cleanly convert. Those differences reveal themselves not in catalogs but in spent time troubleshooting or cleaning up messier syntheses.
Our days rarely end without double-checking drums and containers in the warehouse. Proper storage conditions protect the value of the product, so we stress routine temperature and humidity controls, and sealed packaging for transit. The experience burns in that you don’t cut corners: even a small exposure to moisture can spoil an otherwise perfect lot.
Operators picking up on the faint scent or minor clumping in the powder know to investigate further. We avoid guesswork by labeling everything in-process and out of process. Internal traceability matters more than a logo on the outside carton—our focus centers on trackable batches, clear documentation, and correct transport documentation.
The transport packaging must withstand the bumps and shakes of global shipment. Each year, we evaluated and updated our outer drum and inner liner choices based on feedback from live deliveries and returned empties. The cost in delays or product loss far outweighs spending a few more minutes checking each pallet before it rolls out.
Years back, sporadic variation in raw material purity taught our team to never assume even reputable suppliers deliver the same quality every shipment. Any variation gets caught in our internal checks before it moves further along the value chain. We've seen how a 97% batch sometimes gives a totally different reactivity profile than a highly purified 99% batch—solvents, temperature, or the time spent in the final reactor stage truly influence outcomes.
We house melting point data and NMR analysis for every lot. Not because it looks good on a spreadsheet, but because chemists at the point of use need to know they can reproduce results. A slight impurity spike isn’t just theoretical: it creeps into reaction workup, complicates isolation, adds burden to analytical labs downstream, and can undermine a multiple-step synthesis.
These are mistakes we paid for years ago, and those lessons re-shaped how we control our process. Every new team member is trained first on nonnegotiable checks, as ignoring a step does not pay off in the long run. The pride we take in product quality reflects in customer feedback and reduced rejections.
Steering operations in the global chemical industry means respecting local and international rules. N-Benzoyl-4-Piperidone doesn’t fall under the toughest controlled precursor regulations, but each jurisdiction may set its own list and monitoring demands. Some markets in Asia or Europe have specific documentation requirements for movement or end use; fulfilling them accurately means paying close attention from the start of any order.
Environmental responsibilities have grown from a side topic to a daily operational concern. Our plant operates under strict emissions monitoring, water handling, and solvent recovery practices. Waste minimization comes not from abstract ideals, but from the realities of hazardous waste disposal costs and long-term environmental impact. Each batch processed with efficient solvent recovery and reduced waste translates into real savings and practical sustainability.
During audits, inspectors often comment on our closed-system design, spill containment, and electronic batch record keeping. These systems grow from direct practical feedback; when you run a facility long enough, you see firsthand how proper chemical stewardship saves money and headaches. Staff training addresses not just compliance but why these procedures matter for everyone’s safety and for the planet.
Long-term relationships with raw material suppliers underpin stable N-Benzoyl-4-Piperidone production. Every few months, our staff conducts supplier reviews and site visits, cross-checking actual performance against promised specifications. This reduces last-minute surprises and builds mutual respect—a necessity in a field where a reactor shutdown can cost dearly in overtime and lost inventory.
Upstream issues sometimes threaten to disrupt even the best laid plans—unexpected raw material outages, freight delays, or regulatory holdups. Our answer is redundant qualified suppliers and buffer inventory planning. Those strategies grew out of hard-won experience: past years’ shortages didn’t get solved by wishful thinking. Instead, careful monthly tracking and clear communication with partners worldwide makes the difference.
Rather than relying on spot purchases, we negotiate annual supply contracts where possible. Our team monitors supply chain performance and adjusts shipping schedules as needed. Customers downstream can trust that we won’t blame outside events for lapses in service.
After each production cycle finishes, our teams cross-analyze results, noting anything outside expectations. If a parameter drifts or a shipment suffers abnormal breakage, root cause analysis kicks in immediately. This mindset gives us an edge: changes to the plant—larger vessels, automation tweaks, or new drying equipment—come from actual use cases, not marketing trends.
Mistakes once caused headaches, missed deadlines, or added batch rejections. That history now feeds a process where nobody gets left repeating old missteps. Junior chemists learn from veterans well-versed in both theory and years of hands-on troubleshooting. The best improvements come from the shop floor, not executive brainstorming.
Open channels with customers build stronger partnerships than a quote or product description ever could. We host technical exchange days and answer queries from process chemists trying to solve scale-up bottlenecks. Documentation is shared transparently—certificates of analysis come with lot-specific analytical data, matching what we see internally.
Some technical requests require digging through years of historical records, comparing batch performance at different scales. Fielding questions about stability, preferred solvents, or downstream incompatibility allows us to contribute beyond just shipping a product. Feedback from customers frequently leads to small tweaks, for example, in drying temperatures or packaging designs that save time and reduce breakage.
Our sales staff and technical team work as a unit, speaking from manufacturing experience rather than rote scripts. We recognize that chemical synthesis is an unpredictable business and aim to reduce customer risk by keeping information and support current.
Few things encourage us more than seeing N-Benzoyl-4-Piperidone incorporated into published research or a promising pharmaceutical pipeline. Advanced chemical building blocks like this create downstream value, offering medicinal chemists a foundation for exploring new synthetic territory. We remain engaged in collaborative development projects, providing custom lot sizes, technical advice, and new analytical data whenever possible.
Our team keeps its technical knowledge fresh by reading journals, attending symposia, and staying connected to the forefront of synthetic organic chemistry. These efforts benefit the wider scientific community by ensuring that even routine production facilities do not get left behind in closed-off routines. We test new purification methods in small lots and scale up only after repeatable success, thus minimizing risk for all involved.
Chemical manufacturing always presents new challenges: shifting regulatory landscapes, scrap reduction, greater demands for cost transparency. We invest in further automation, energy recovery, and more robust QC systems each year to address them.
N-Benzoyl-4-Piperidone continues to draw on decades of multidisciplinary experience from chemists who prefer to engage directly with the products they make. Each batch earns its specifications—and the trust of every customer—through careful work, hands-on troubleshooting, and transparent communication. The compound’s value is not locked in technical jargon, but rather in sustained quality and reliability honed over years.
We’re results-oriented because our industry leaves little room for shortcuts. The feedback loop between process development, rigorous production, and practical chemistry keeps not only our products but our entire operation steadily improving. The future for this molecule and its broader applications remains wide open, and as direct manufacturers, we look forward to meeting both known and new challenges with rigor and know-how grounded in lived experience.