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HS Code |
759197 |
| Chemical Name | 1-Benzylimidazole |
| Molecular Formula | C10H10N2 |
| Molecular Weight | 158.20 g/mol |
| Cas Number | 620-94-4 |
| Appearance | Colorless to pale yellow liquid |
| Density | 1.077 g/cm3 |
| Boiling Point | 282-284 °C |
| Solubility In Water | Slightly soluble |
| Refractive Index | 1.593 |
| Flash Point | 141 °C |
| Purity | Typically ≥98% |
| Storage Temperature | Store at room temperature |
| Smiles | c1ccc(cc1)Cn2ccnc2 |
| Synonyms | N-Benzylimidazole |
As an accredited 1-Benzylimidazole factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging for 1-Benzylimidazole, 100 grams, features a sealed amber glass bottle with a secure screw cap and clear labeling. |
| Shipping | 1-Benzylimidazole is typically shipped in tightly sealed containers made of compatible materials to prevent leaks and contamination. It should be kept in a cool, dry, and well-ventilated area, away from strong oxidizers. The package must comply with regulations for chemical transport, including appropriate labeling and documentation for safe handling during transit. |
| Storage | 1-Benzylimidazole should be stored in a cool, dry, well-ventilated area, away from direct sunlight, heat, and sources of ignition. Keep the container tightly closed when not in use, and store it separately from strong oxidizers, acids, and bases. Use appropriate chemical-resistant containers and label them clearly. Ensure compliance with local regulations for chemical storage. |
Applications of 1-Benzylimidazole in Industrial Manufacturing1-Benzylimidazole serves as a critical intermediate for various advanced manufacturing sectors. As the original chemical producer, we supply this raw material for downstream processors who require precise quality, controlled reactivity, and regulatory adherence to meet differentiated product development demands. Below we detail the main sectors where 1-Benzylimidazole functions in formulation and process integration. 1. API Synthesis for PharmaceuticalsPharmaceutical manufacturers incorporate 1-Benzylimidazole in the synthesis of drug intermediates, particularly for antifungal azoles, antiviral agents, and modified nucleoside derivatives. Its functional group and heterocyclic structure enable formation of bioactive compounds through N-alkylation or as a ligand for metal-catalyzed coupling processes. Stringent batch traceability and impurity profiling are standard throughout production, with regulatory audits requiring full-source documentation from the actual material origin. Industry compliance standards
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2. Curing Accelerator for Epoxy ResinsThe electronics, coatings, and adhesives sectors utilize 1-Benzylimidazole as an accelerator for two-component epoxy systems. Its unique catalytic activity supports rapid polymerization at ambient or elevated temperatures, improving cure speed and mechanical properties such as adhesion, dielectric strength, and heat resistance. Manufacturers depend on consistent purity and reactivity for process predictability, with detailed QC protocols governing raw material inspection and in-process control sampling. Industry compliance standards
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3. Corrosion Inhibitor Formulation for Metalworking FluidsProducers of water-based and oil-based metalworking fluids formulate 1-Benzylimidazole as a specialized corrosion inhibitor, particularly for multi-metal protection systems. Its adsorption and surface-film forming ability enhance defense against oxidation and acid attack on ferrous and non-ferrous alloys. End-users demand detailed batch controls and absence of nitrosamine precursors as per international safety evaluations and environmental compliance targets. Industry compliance standards
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4. Phase Transfer Catalyst in Fine Chemical SynthesisChemical manufacturers producing advanced intermediates or specialty organics use 1-Benzylimidazole as a phase transfer catalyst for certain nucleophilic substitution and alkylation reactions. Its structure allows for increased reaction rates, higher product selectivity, and improved yields under biphasic conditions, especially for industrial processes scaling to hundreds of kilograms. Strict documentation and tracking are required during procurement and operational use. Industry compliance standards
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5. Ligand Component for Homogeneous CatalystsProducers of homogeneous catalysts adopt 1-Benzylimidazole as a sterically modifiable ligand in metal-complex formulations, such as palladium or copper catalysts used in cross-coupling and C–N bond formation. The purity and controlled metal trace content from the producer are monitored closely since minor deviations can impact catalyst selectivity and downstream product clarity. Outsourced catalyst packagers request specific support on traceability and supply chain integrity, especially for GMP-relevant processes. Industry compliance standards
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For years, 1-Benzylimidazole has anchored itself quietly in many fine chemical and pharmaceutical laboratories. Its molecular formula, C10H10N2, marks it as an imidazole ring structure with a benzyl group. This combination means the compound opens new doors in catalysis, intermediate synthesis, and complex molecule development. Our manufacturing team rarely sees a month pass without custom requests for specific batches tailored to the unique needs of chemists worldwide. The product we deliver comes with decades of quality control improvement, hard-won process insights, and direct feedback from process engineers and bench chemists.
Manufacturing 1-Benzylimidazole consistently involves tightening control over purity and minimizing byproducts. A typical batch from our reactor leaves the plant at above 99.5% purity by GC, with less than 0.2% water determined by Karl Fischer titration. This exceeds most published pharma requirements, where material purity often sits at 98% or lower. Physical specifications shape the everyday experience of the compound in your lab: a clear, colorless to faintly yellow liquid at room temperature, boiling at roughly 285°C, and showing reliable solubility in common polar organic solvents like DMF and DMSO. Moisture control in the packing area, direct nitrogen blanketing during filling, and independent lot verification mean fewer surprises in your bottle—batch traceability runs back through years, not just months.
Applications for 1-Benzylimidazole reach far beyond textbooks. In our experience, it finds its way into synthetic routes for pharmaceutical active ingredients and works as an intermediate for pesticides and plant growth regulators. The electron-rich imidazole ring and the benzyl group both influence reactivity patterns, enabling selective alkylation, acylation, or condensation reactions. Over the years, we have observed more clients requesting material for ionic liquid precursor synthesis, as researchers recognize the strong solubility and viscosity-modifying properties of imidazole derivatives.
In specialty polymer chemistry, product developers depend on 1-Benzylimidazole to introduce stability or modify chain-end properties. R&D labs working on new photoinitiators often turn to our 1-Benzylimidazole due to its high consistency between lots. Our feedback loop with application engineers has helped us optimize solvent compatibility, ensuring process up-time during high-value production runs. In organic electronics, where metal complexation matters, the nitrogen atoms in imidazoles like this one reliably coordinate with transition metals, strengthening device performance or boosting catalytic efficiency.
Having overseen scale-ups from lab glassware to multi-ton reactors, our team notes clear differences between manufacturing 1-Benzylimidazole and other imidazoles. Adding the benzyl group during synthesis introduces extra purification steps—not only to remove unreacted benzyl halides, but also to limit formation of dibenzyl impurities. Compared to simple imidazole or 2-methylimidazole, controlling temperature gradients and azeotropic distillation parameters matter much more. Each run brings a learning opportunity echoed in product consistency. Our reactors run with high-shear agitation. We check baseline spectra after each purification loop, catching even subtle degradation that may evade cursory QA screens used elsewhere.
We do not outsource core production. Our chemists install new process sensors themselves, then spend weeks calibrating equipment. Nitrogen blanketing systems, once optional, became standard after seeing how quickly moisture can affect long-term storage. Unlike traders or distributors repackaging bulk material, we fill each bottle at our own facility, capping as close to the process stream as possible, which maintains headspace purity. Customers often remark that our 1-Benzylimidazole requires substantially less “clean-up” during pre-reaction conditioning—and that has allowed downstream process cost reduction on their end.
Our approach to quality goes deeper than filling a certificate of analysis. Many of our customers judge us not on initial delivery but on stability after weeks sitting on the shelf, or after rough handling during urgent overnight shipments. Because our reactors operate under strictly controlled inert atmospheres, and because we run chromatographic checks in-house, we catch process drift before it impacts customers. A few years ago, a recurring contaminant at the ppb level showed up intermittently in competitor products. Our full-lot retention and microscopic record-keeping let us trace the root to one of the filling heads; re-machining and passivating the steel solved the issue permanently. This persistent focus on incremental improvement means every gram leaving our facility has met multiple human and instrumental checks.
Regulatory bodies overseeing pharmaceutical synthesis frequently review supplier reliability. Our regular customers in the United States, Europe, and East Asia count on us to keep impurity profiles stable. Routine audits of solvent recovery efficiency, packaging sterility, and chromatographic reproducibility lead to quiet confidence in our trays and drums. Analytical chemists on our staff maintain certifications for HPLC, GC-MS, and titrimetric methods, investing in continuous education as new detection and quantification techniques reach market maturity.
Comparing 1-Benzylimidazole to its cousins in the imidazole family reveals subtle, but crucial, contrasts. Unsubstituted imidazole appears as a solid at room temperature, white and powdery, with much higher hygroscopicity. It serves best where nucleophilic substitution or buffer action matters. The addition of the benzyl group raises the hydrophobicity, shifting solubility balance towards organic phases, and notably changes reactivity in N-substitution chemistry. Other analogs, such as 2-methylimidazole or 1-butylimidazole, introduce different steric bulk and electron-donating influences. For customers looking to tailor polymer chain end-groups or ligand environments in catalysts, these differences manifest in real changes in product performance—not just academic trivia.
Across years of support for process development teams, customers have stressed how the consistency of melting point, boiling point, and water content directly affect formulation and scale-up. Even minor batch variability can change chromatography results or reaction kinetics. Our quality data over time gives end-users documentation for regulatory submissions, with full traceability through each raw material. The challenge with benzyl derivatives rests more with byproduct control and avoidance of cross-contamination, especially where other benzyl halides get used on the same line. We run separate cleaning protocols after each production lot, investing extra labor and tracking each wash until impurity signals drop below instrument limits.
On the factory floor, the synthesis of 1-Benzylimidazole centers on coupling chemistry between imidazole and suitable benzylating agents. The process yields an oily intermediate requiring careful separation from inorganic salts and soluble tars. Standard distillation methods alone won’t reach the necessary purity, since closely related byproducts boil within five degrees. To solve this, our team introduced a crystallization step using custom-blended solvents, followed by vacuum stripping to recover high-purity product. This direct investment in process engineering, with every tweak guided by real-time analytics, made it possible to confidently assure specifications in the delivered material.
Filtration residue contains not just unreacted reagents, but often traces of colored organics which resist standard charcoal treatment. Early trial batches sometimes wound up tinged with faint yellow, a sign of incomplete neutralization or breakdown products. Now, each run includes dual filtration—first through inert pre-coated media, then through activated carbon. Every outgoing sample must clear a visual clarity check under standardized lighting, aligning quality with what customers have come to expect. Experienced operators adjust parameters more efficiently than recipes alone could dictate, using an understanding cultivated through repetition rather than automation.
Waste minimization plays a constant role in our culture. The benzylation reaction generates hydrochloride salts and solvent wash streams. Early in scale-up, we found offsite disposal unsustainable. Building an onsite recovery station cut that burden substantially. Now, solvent is looped back into the process after purity validation, and salt streams get neutralized before entering the wastewater path. Local regulators inspect our records quarterly, reinforcing commitment to safety and compliance. The entire plant workforce—line operators to R&D chemists—undergo annual hazmat and waste management drills. This has instilled an ethic of responsibility, not only for regulatory clearance but for community well-being.
Our suppliers deliver base and acid raw materials in returnable bulk containers to cut down on packaging waste. Close relationships with upstream chemical providers give us input into their environmental practices and let us tighten our own restrictions when new waste-reduction methods become feasible. A concerted move away from chlorinated solvents in cleaning cycles, driven by both outside scrutiny and inside conscience, has improved both safety and air emissions. These steps sometimes increase process overhead but contribute to long-term reliability and reputation.
Direct dialogue with customers informs regular process reviews. Many process engineers and QC managers have visited our facility. Their site audits prompt practical modifications in our batch processing, storage, and transport systems. We value this level of scrutiny because it surfaces issues that don’t appear on a specification sheet. One instance involved reaction trace metals; multiple customer reports led us to redesign a section of piping to eliminate copper ingress, improving final product stability for moisture- and oxidation-sensitive end-use formulations.
Pharmaceutical customers often share new analytical results that extend our own datasets. Joint development of impurity standards and joint review of tailing factors in chromatographic assessments lead to better-known impurity "fingerprints." These collaborations give customers assurance when facing regulator questions and have improved our own lot-release thresholds. Our records from over a decade provide traceability for every container, down to the production shift operator and instrument calibration logs. This ability to answer detailed questions quickly has cemented our standing in regulated industries.
Experience in chemical logistics tells us one bottle can shape a customer’s impression for years. 1-Benzylimidazole’s liquid nature and low volatility enable shipping for both small samples and industrial drums without elaborate secondary containment. Still, even slight oxidation can shift color and purity. To minimize these risks, packing lines operate under nitrogen and dedicate separate storage for outgoing shipments, segmented by batch date. We train staff in recognizing early signs of pressure build or off-odors, signaling possible unintended reactions.
Some customers require special drum liners or non-standard labeling for easier warehouse integration or for hazard compliance. Requests for glass amphoras, amber bottles, or Teflon-lined seals have become more frequent as shipping routes and climate zones shift. Our plant’s packing staff set up dedicated QA for all specialty requests, running bottle headspace checks with modern analytical equipment. Feedback from end-users informs our trouble-ticket system. If a customer flags a material-handling issue—even if it later proves unrelated to the product—our team reviews handling, sealing, and transport documentation. This proactive approach prevents repeat problems, while strengthening customer trust.
Demand for 1-Benzylimidazole tracks closely with broader trends in pharmaceutical, agrochemical, and specialty chemical manufacturing. Growth in green chemistry has spurred interest in imidazole analogs for ionic liquid development, and tighter API impurity regulations keep raising the bar for product consistency. Process digitization and real-time analytics now shape remote QA dashboards for many customers, who request data feeds into their own systems. Our production lines now incorporate data loggers and cloud-based tracking, offering better transparency without sacrificing information security.
Looking ahead, research teams expect even smaller impurity windows and more meaningful batch-to-batch analytics. Our process chemists devote hours to anticipating customer synthesis changes that might require further specification tightening. Proactive engagement with trade groups and standards-setting organizations gives us early awareness of changing documentation and reporting standards. In the plant, trials are underway for further solvent recovery technologies, as well as steps to reduce total energy use per kilogram produced—a move as much about operational reliability as about climate stewardship.
Behind every gram of 1-Benzylimidazole stands a web of dedicated people, reliable suppliers, attentive operations, and a continuous improvement mindset. The effort to deliver pure, consistent material reflects decades of lessons from the floor and feedback from labs large and small. Each batch passes through not just a series of instruments, but human checks and knowledge built up year after year—knowledge that remains at your service through every synthesis, scale-up, innovation, or regulatory question. In an industry shaped by both tradition and velocity, this commitment anchors our role not only as manufacturers, but as partners championing the value of dependable chemistry where it matters most.