|
HS Code |
498863 |
| Chemical Name | 4-Ethoxybenzamide |
| Cas Number | 619-64-7 |
| Molecular Formula | C9H11NO2 |
| Molecular Weight | 165.19 |
| Appearance | White to off-white solid |
| Melting Point | 132-136°C |
| Boiling Point | No data available (decomposes) |
| Solubility | Slightly soluble in water; soluble in organic solvents |
| Density | 1.17 g/cm3 |
| Synonyms | p-Ethoxybenzamide; Benzamide, 4-ethoxy- |
| Smiles | CCOC1=CC=C(C=C1)C(=O)N |
| Inchi Key | BFFBQIHLJUOLJP-UHFFFAOYSA-N |
| Storage Conditions | Store in a cool, dry place, tightly closed |
As an accredited 4-Ethoxybenzamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | White plastic bottle labeled "4-Ethoxybenzamide, 100g" with hazard symbols, manufacturer details, lot number, and storage instructions printed clearly. |
| Shipping | 4-Ethoxybenzamide is shipped in tightly sealed containers, protected from moisture and direct sunlight. It is packed according to standard chemical safety regulations, with clear labeling. During transit, the substance is handled as a non-hazardous chemical, ensuring secure packaging to prevent leaks or spills. Appropriate documentation accompanies each shipment. |
| Storage | 4-Ethoxybenzamide should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from incompatible substances such as strong oxidizers. Protect it from light, heat, and moisture. Label the storage container clearly, and ensure appropriate safety measures are in place to avoid inhalation, ingestion, or direct skin contact. |
Applications of 4-Ethoxybenzamide in Industrial ManufacturingAs a specialized manufacturer of chemical raw materials, we supply 4-Ethoxybenzamide for advanced downstream industries with established use-cases in demanding processes. The following application scenarios detail its presence across industrial segments with reference to regulatory compliance, established dosage levels, integration points, and resulting product forms. 1. Pharmaceutical Intermediate for Non-Steroidal Anti-Inflammatory Drug Synthesis4-Ethoxybenzamide functions as a critical intermediate in the multistep synthesis pathways for select non-steroidal anti-inflammatory drugs (NSAIDs), where it provides the ethoxybenzoyl moiety in the active core structure. Its use directly impacts the purity and process yield, and its selection follows close regulation by monograph and GMP standards, influencing both batch consistency and pharmacological performance. The material is introduced during early acid-amide coupling steps in controlled reactor environments. Industry compliance standards
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2. UV Absorber Precursor in Specialty PolymersIn the specialty polymer sector, 4-Ethoxybenzamide serves as a precursor during the production of UV absorbent monomers, particularly in polyarylate and copolyester chains. It introduces structural stability with enhanced photostability, and its purity profile is crucial to the optical and physical properties of the final polymer. The additive enters polymerization stages under monitored conditions to ensure polymer chain integrity and precise molecular weight distribution. Industry compliance standards
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3. Dye Intermediates for Aromatic Colorant ManufactureIn colorant production, 4-Ethoxybenzamide acts as an aromatic amide source during the synthesis of specific benzamide-based dyes for textile and plastic applications. The compound’s chemical reactivity and substituent profile shape the chromophore’s lightfastness and hue characteristics. The raw material is introduced at the initial diazotization or condensation step, with purity and trace metal content tightly specified by industry standards for color reproducibility and safety. Industry compliance standards
Typical usage ratio
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4. Analytical Reagent Production for Laboratory ChemistryProducers of analytical and laboratory reagents use 4-Ethoxybenzamide to introduce defined amide functionalities in the manufacture of high-purity calibration standards and derivatization reagents. Here, stringent controls on trace contaminants and batch homogeneity prevail. The material is dosed either during stepwise synthesis or as a derivatization agent in pre-formulation, where preparation follows analytical-grade protocols under regulatory scrutiny. Industry compliance standards
Typical usage ratio
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We have spent years at our production plants working hands-on with aromatic amides of every variety. Among these, 4-Ethoxybenzamide stands out for both its practical versatility and stability. Our teams have watched its steady rise in demand among synthetic chemists and advanced material researchers. Model: 4-Ethoxybenzamide, CAS 983-60-0, molecular formula C9H11NO2. Typical lot purity reaches 99% minimum—tight controls keep residual solvents under 0.2%. Batch records and full traceability follow every drum and kilo pack through the gates. We keep inventory as both fine crystalline powder and larger granules to ease scaling from milliliter lab scale to full metric-ton production.
You can smell and see the difference with 4-Ethoxybenzamide straight from the reactor line. Material arrives as off-white to faintly yellow crystals, not lumpy or uneven. Our drying protocols and multi-stage purification control residual moisture under 0.3%. Each drum holds a certificate of analysis that covers HPLC traces, NMR spectra and, where relevant, documented impurity profiles. We apply the same standards for our kilo-lab batches and multi-tonne runs, whether material is bound for pilot innovation or for steady long-term process supply.
Most end-users want consistent physical and chemical properties batch after batch. We rarely meet requests for extra purification because starting materials and handling remain tightly controlled; our production teams believe in full accountability. 4-Ethoxybenzamide brings a reliable melting point, minimal polymorphic drift, and high solubility in polar organic solvents. For anyone in research or process development, these qualities mean less time troubleshooting and more time focused on building value.
Down the line, we know where 4-Ethoxybenzamide lands. It appears again and again on the bench as a trusted intermediate. Researchers preparing agrochemical, pharmaceutical, and specialty material scaffolds appreciate its electrophilic benzamide backbone. Ethoxy substitution at the para-position improves both solubility and reactivity for downstream acylation or amidation reactions. Fine chemical producers use this functional group arrangement to construct libraries of biologically active analogues or tune properties for electronic and optical applications.
Having spent years scaling up and optimizing its synthesis, we can vouch for the reliability of our process control. In every cycle, we keep an eye on temperature gradients, reaction times, and byproduct formation. Every consignment undergoes quality tests covering melting point, purity, and moisture—standards set not by what we imagine regulators want, but by what our own teams expect for downstream reproducibility.
After years walking the plant floors, we have a close relationship with the practical challenges faced by R&D and manufacturing teams. 4-Ethoxybenzamide may not carry a flashy name, but it earns steady business because people value material that just works. By introducing the ethoxy group at the para-position, this molecule brings increased solubility in common reaction solvents, like ethanol and dimethylformamide. The ethoxy group also fine-tunes the reactivity compared to unsubstituted benzamide. These attributes come out most clearly in routes where dissolution matters, or where side-reactions with more basic amide systems jeopardize yields.
The decision to offer both fine powder and granule forms comes straight from customer feedback. Early-stage chemists often need precise weighing, so a free-flowing crystalline powder fits. Bulk processors running larger reactors prefer granules for less dust and consistent feeding. We switched to smaller-batch crystallization for powder production precisely to prevent caking—a lesson we learned by listening to teams downstream. Our plant engineers kept an eye on the blending and drying rooms, matching filtration rates and drying time to output requirements. Every kilogram we ship reflects thousands of test records and long experience keeping to rigorous standards.
Many substitute para-substituted aromatic amides crowd the market. We see laboratories ordering 4-Methoxybenzamide, 4-Chlorobenzamide, and plain Benzamide for similar purposes. Each finds its place based on desired reactivity and downstream compatibility. Benzamide shows a lower solubility ceiling, causing headaches in scale-up filtration or slow dissolution in cold conditions. 4-Methoxybenzamide differs mainly in its electron-donating methoxy group, but it often introduces steric bulk or unintended O-methyl migration under harsh reaction conditions. 4-Chlorobenzamide, with its electron-withdrawing chloro group, changes reactivity in cross-coupling or nucleophilic aromatic substitution.
After years of bench and plant work, we notice that 4-Ethoxybenzamide lands in the ‘sweet spot’—enough electron-donating effect for smooth substitution, less volatility from side-reactions, and a tuning knob on physical properties like solubility and melting point. These distinctions show up in synthetic pathways where ethoxy’s bulk and moderate polarity set this molecule apart. We host pilot runs and scale-up support for customers comparing multiple para-substituted benzamides, and reaction output often tips in favor of the ethoxy variant when consistent yield and purity matter most.
Our approach favors close rapport with end users. Synthetic chemists often tell us about reaction bottlenecks discovered after switching substrates. Several partners describe issues with solubility when pushing unsubstituted benzamide to higher concentrations; the difference after shifting to 4-Ethoxybenzamide cuts both filtration time and material waste. In one example, a team scaling a pharmaceutical intermediate saw solvent switchovers run smoother, with product isolation improved by finer particle size and faster drying—a direct result of our process refinements.
Another downstream manufacturer, working in electronics intermediates, commented on the value of a consistent melting point during purification. Amorphous or variable-form products can slow purification and reduce reactivity. Because our 4-Ethoxybenzamide comes out of reaction and work-up with narrow-range properties, separating similar analogues gets easier, and adjustment of crystallization protocols takes less guesswork.
These field stories aren’t brief flashes—feedback feeds back into our production cycle. From unscheduled on-site visits to remote troubleshooting for QA teams, we keep information moving both ways. In the end, material success at scale comes down to respect for both the science and the people behind the process.
Every gram of 4-Ethoxybenzamide coming out of our plant sits at the intersection of chemistry and trust. Strict quality testing covers more than regulatory compliance—it supports ongoing validation of downstream results, especially in pharma and electronics. Failure in batch reproducibility, out-of-range melting points, or spotty solubility can halt an entire production sequence. Having full insight into each step—from raw materials through purification, drying, and final inspection—lets us prevent headaches for downstream users.
Teams want analytical evidence they can trust. We run HPLC, NMR, and GC/MS profiles on every lot. Over time, we built up a baseline impurity map, recording even the minor peaks seen at parts-per-million levels. Our QA teams made it a rule to go beneath simple percentage purity and probe for early warning signs in the spectra. If a batch falls out of spec, we investigate root cause in real time: was it starting material drift, temperature shift during main reaction, or traces from solvent recovery? We document corrective steps and, where necessary, hold back shipment until every doubt clears. This framework did not appear overnight—it represents more than a decade of trial, response, and rigorous self-critique.
Times change, and global supply patterns sometimes throw curveballs. From logistics interruptions to shifts in regulatory focus, we saw firsthand how valuable it is to have transparent, responsive workstreams in chemical manufacturing. With 4-Ethoxybenzamide, traceability starts with vetted raw materials—aromatic acids meeting strict identity and purity standards. Our purchasing teams order on contracts guaranteeing delivery, but we keep secondary sources warmed up and audited for emergency flexibility.
Document trails extend from receiving dock to reaction, work-up, drying, and outbound shipping. If a challenge pops up—a shipment held by customs, a discrepancy in materials—we don’t hide behind layers of bureaucracy. Responsible manufacturing means keeping the customer in the loop, sharing both the issues and the fixes as soon as possible. Clients tell us they value direct contact with engineers and lab managers, not just sales personnel, especially when clarifying requirements or troubleshooting a persistent issue.
Over the years, we improved packaging and storage for 4-Ethoxybenzamide based on observed field failures and returned material. Switching to double-lined fiber drums, enhancing vacuum sealing, and testing container closure integrity brought measurable gains in shelf-life and reduced cross-contamination. It sounds mundane, but protecting quality during transit supports everything that happens on the client’s side—no one wants to waste time redissolving clumped solids or chasing down micro-scale contaminants.
Every chemical, even those serving basic roles, can open new territory if handled with insight and rigor. Our teams follow emerging research into functionalized benzamides and para-substituted aromatics, from pharmaceutical preclinical screens to advanced electronics and coatings. We support academic and industrial collaborations, sharing technical background and performance metrics on 4-Ethoxybenzamide with scientists pushing limits or evaluating new synthesis routes.
Supplying specialty chemicals goes far beyond putting material in bottles. Our process chemists run exploratory scale-ups, stress-testing reaction protocols and optimization steps, to help clients avoid pitfalls and save real time. If a partner faces an unexpected reaction with an unfamiliar impurity, we dig through our retained reference samples and analytical archives to track trends that might explain the hiccup. Two-way troubleshooting and transparent records save both material and budgets.
The rise of digitalization in lab management changes the playing field for all involved. We support data-driven decisions by providing electronic lab notebook integration for batch datasets and spectral files. Investment in this technology brought real transparency and shorter turnaround times on documentation requests. It wasn’t pushed by compliance—they simply made internal troubleshooting and cross-team learning much easier.
Industry often faces criticism about environmental footprint and chemical safety. From the start, we took worker and environmental safety as daily realities—not PR talking points. The main synthetic steps in our 4-Ethoxybenzamide process use solvents and reagents with low environmental risk profiles. We minimize emission and waste generation at the source, capturing or recycling by-products where feasible. Scrutiny of process conditions and personal protection equipment choices keeps our teams safe, from material transfer to final packing.
Our on-site labs check process water for residual chemicals on a set schedule, and effluent management uses active treatment and verification. Regulatory compliance flows from habits built over years, not scramble-and-retrofit. Because we train every new engineer and operator directly, strong safety performance is part of routine, not a box-checking afterthought. Visitors to our plants often comment on the visible engagement and open channels for feedback—they see operators call for a process halt if monitoring picks up a red flag, not wait for supervisory approval.
Long-term relationships grow from day-to-day dependability. With 4-Ethoxybenzamide, we don’t make grand promises or advertise quick fixes. We listen, adjust, and stand by our results. Decades spent working directly with production, QA, and R&D teams shaped our values. Each kilo that leaves our plant brings the work of engineers, chemists, supply chain staff, and QC analysts focused on one goal: helping others build success on a material they can count on.
Working one-on-one with both small research labs and global producers, we adapt logistics, documentation, and technical support to match real needs. Many advances in synthesis or downstream applications come out of close feedback and mutual respect. By drawing on real field experience, never simply theory, we offer more than a product—we provide a working partnership for those relying on 4-Ethoxybenzamide in everything from exploratory synthetic runs to established production.
The value of reliable material, tailored support, and technical openness spreads far beyond one batch or one order. Our commitment shows in consistency and direct engagement. We believe this approach makes the most of both scientific expertise and the human relationships that keep modern chemical innovation moving. If you are building toward new discoveries or seeking a stable supply foundation, we stand ready to join you on that path.