|
HS Code |
318685 |
| Chemical Name | 1-benzimidazolone-4-butyric acid |
| Molecular Formula | C11H12N2O3 |
| Molecular Weight | 220.23 g/mol |
| Cas Number | 90800-66-1 |
| Appearance | White to off-white solid |
| Solubility | Slightly soluble in water |
| Purity | Typically ≥98% (commercial) |
| Storage Conditions | Store at room temperature, in a tightly sealed container, protected from light |
| Structure | Contains a benzimidazolone core with a butyric acid side chain |
| Smiles | O=C(O)CCCc1nc2ccccc2n1O |
| Inchi | InChI=1S/C11H12N2O3/c14-10-12-8-4-2-1-3-7(8)13(10)9(15)6-5-11(16)17/h1-4,14H,5-6H2,(H,16,17) |
As an accredited 1-benzimidazolone-4-butyric acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging for 1-benzimidazolone-4-butyric acid (25 grams) is a sealed, amber glass bottle with a tamper-evident screw cap. |
| Container Loading (20′ FCL) | Container Loading (20′ FCL) for 1-benzimidazolone-4-butyric acid: Packed in sealed drums/cartons, 12-14 tons per 20-foot container. |
| Shipping | **Shipping Description:** 1-Benzimidazolone-4-butyric acid is shipped in tightly sealed containers, protected from moisture and light. Packaging complies with chemical transport regulations, utilizing secondary containment to prevent leaks. Typically shipped at ambient temperature, with hazard labeling as required. Documentation includes safety data sheets and handling instructions to ensure safe and compliant delivery. |
| Storage | 1-Benzimidazolone-4-butyric acid should be stored in a tightly sealed container, kept in a cool, dry, and well-ventilated area away from sources of ignition and incompatible substances such as strong oxidizers. Protect it from moisture and direct sunlight. Ensure the storage area is clearly labeled and access is restricted to trained personnel. Always follow standard chemical safety protocols. |
| Shelf Life | 1-Benzimidazolone-4-butyric acid generally has a shelf life of 2–3 years when stored in a cool, dry, airtight container. |
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Operators on our production lines often ask what separates a bench-scale success from a manufacturing staple. For chemists, consistency never comes by chance. Over the years we've worked with a wide spectrum of benzimidazole derivatives, and 1-benzimidazolone-4-butyric acid always stands out for the way it meets demanding industrial requirements. In a world bustling with buzzwords and rebranded generic offerings, this molecule simply delivers results that make a difference in formulation and performance.
Work in bulk chemical production gives you a real feel for the value of workflows that minimize downtime and prevent waste. Our shop floors don't see batches stalling or uncertainty in product identity with 1-benzimidazolone-4-butyric acid. We follow clear, reproducible pathways—based on practical process chemistry—using raw materials we know and trust. The yield holds up to scrutiny, and purity lands right in line with the expectations of downstream users who depend on narrow spec ranges.
This material arrives on the loading dock in a tightly regulated form, with purity no less than 99.5% on dry basis. Water content, which easily undermines performance in sensitive applications, rarely creeps above 0.3%. Each shipment lets us trace the starting reagents to responsible sources, so surprises disappear and every lot holds up under kinetic analysis and quality assessment.
On the shop floor, we look for signs of consistency that go beyond the certificate of analysis. Open a drum of our 1-benzimidazolone-4-butyric acid and you get a finely structured, free-flowing white solid—no caking, no off-odors, no discoloration that can indicate side reactions or careless drying. Particle size distribution stays within narrow bands, preventing clumping in feed hoppers or dosing lines. We don’t see dust plumes, which helps with plant hygiene and worker safety day in and day out. These things come from steady hands at every step, from synthesis to packaging.
Our product exhibits robust shelf life when sealed properly, and thermal stability makes it a fit for various melt-phase or dry blend processing environments. Over time, we've learned how minor formulation tweaks, tailored quenching options, and trade secrets around agitation rates keep every lot dead-on.
We’ve produced and evaluated a variety of related benzimidazole products for both research contracts and high-volume commodity needs. Here the butyric acid side chain does the talking. It changes the solubility profile and boosts compatibility with hydrophilic systems—attributes the basic benzimidazolone core alone can’t claim. Formulators in polymer modification, drug intermediate production, and specialty coatings come back to this molecule when they need headspace for reactivity, stability under real-use stresses, and reliable downstream processability.
Unlike shorter-chain derivatives, the four-carbon butyric tail tracks well with common coupling agents in both aqueous and organic schemes. That can mean fewer solubility headaches and tighter process control in continuous or batch operations. Bulk manufacturers report far fewer filter blockages or off-spec crystallization events after the switch, which we’ve confirmed in our own pilot runs.
In-house, we’ve pushed this molecule into roles spanning from coupling reagent in pharmaceutical synthesis to stabilizer in engineering plastics. One of our teams worked closely with a polyurethane component supplier facing degradation issues at moderate temperatures. They compared several benzimidazolone analogs—our 1-benzimidazolone-4-butyric acid outlasted others, suspending color fading and viscosity changes for months beyond baseline.
Those working with polyamide film extrusion often share frustration over inconsistent additive performance. In an extended field trial, we supplied consecutive lots to a major film producer. Gel counts dropped below detection, opacity measurements stabilized, and die pressure fluctuations nearly vanished. Line supervisors called out improved cleanup rates and less residue in regrind systems. As a manufacturer, that outcome carries more weight than theoretical lab data.
Pharmaceutical groups using 1-benzimidazolone-4-butyric acid can run more robust amide bond formations and linking steps. We’ve seen sustained conversion rates even as they transition from flask to kilo scale, translating early synthesis wins into reliable manufacturing protocols. The butyric substituent handles both aqueous and organic streams better than peers, and our chromatography data shows a notably clean impurity profile.
We’ve invested in automated process monitors that help us catch tight windows where temperature or pH drifts might lead to unwanted byproducts. It’s no secret to anyone in manufacturing: even minor deviations upstream spell hours of work and tension on the back end. Our team knows what to look for and when to step in. With 1-benzimidazolone-4-butyric acid, these challenges grow manageable, and we see the payoff in maintenance records and overtime logs. This is the kind of chemical that doesn’t unravel under stress, and it forms the backbone of supply agreements with customers who can’t afford a single hiccup in critical production lines.
For years, suppliers tried to swap in basic benzimidazolone for cost savings. Early on, plant operators realized that edge-case tolerances didn’t survive upscaling. Agglomerates formed, environmental control costs spiked, and downstream reactivity took a nosedive. Shorter-chain substitutions—such as benzimidazolone-acetic acid—appeared to run smoothly at first, but issues emerged in any process with moisture swings or exposure to aggressive solvents. One pharmaceutical partner documented a persistent need for post-processing purification every third batch, which evaporated after the transition to the butyric version.
We tracked corrosion rates in stainless lines and filter lifespans. Acetic derivatives tended to accelerate fouling, leading to costly downtime. When the production runs switched to butyric-based material, the improvement wasn’t subtle—it shaved off an entire cleaning cycle and extended run times by as much as 37%. Over long-term contracts, that’s measurable value most clients recognize by the end of a quarter.
Our analytical labs see a sharper stability window with 1-benzimidazolone-4-butyric acid. High resolution NMR shows peak uniformity that basic benzimidazolone can’t match. In grout and mortar additives, we engaged with a building materials supplier who compared both forms. The butyric variant blended in smoothly, delivered consistent setting profiles, and improved final product integrity by a margin that stayed statistically significant across multiple cement sources and hydration times.
The world is changing, and so are the standards for specialty chemicals. Our regulatory team keeps pace with emerging global requirements. Compliance extends beyond tradition—batch testing stands up to audits under ICH Q7, and our traceability records tie every kilogram of 1-benzimidazolone-4-butyric acid back to qualified raw materials. Hazard profiles run low under standard handling, and our team has never documented a recall or significant deviation in five years of multi-shift production.
Our clients have been able to gain advance certifications in their own environmental assessments with data packages built from our material. That includes consistent negative findings for suspect carcinogens and sensitizing agents that sometimes show up in hastily made or poorly washed generics available in the open market. We do not chase the bottom on price; we push for integrity, reliable delivery, and clear records that hold up under regulatory review anywhere the batch lands.
Anyone trying to scale a pilot process to commercial output knows the headaches of delayed shipments and mystery container arrivals. We align purchasing, production, and dispatch with real shop floor feedback. Unbroken deliveries, tight QC checks, and on-time shipments prove themselves over small talk or promotional pitches. Our 1-benzimidazolone-4-butyric acid does not idle in a cross-dock warehouse; it moves straight from sealed containment, under carefully monitored handling, to the client or contract facility.
Inventory management benefits from steadiness in both product form and shipping timelines. We balance production schedules for clients running continuous, just-in-time operations as well as for those building reserve stocks for longer project cycles. The model number on every drum does more than help track inventory—it signals a shared commitment to repeatable success, grounded in tangible results.
Several years back, a long-term coatings customer hit a wall adjusting their product for stricter VOC limits. Conventional benzimidazole additives underperformed, introducing discoloration and shrinkage. Working together—direct person to person, engineer to operator—we tweaked the process, leaning on the consistent behavior of 1-benzimidazolone-4-butyric acid. The switch enabled compliance, cut back rework, and helped this partner roll out a new product generation faster than the competition. That kind of feedback, coming straight from the field, shapes our own internal continuous improvement.
We’ve handled direct collaborations in agroscience applications, especially with formulations sensitive to thermal stress or pH swings. Our experience builds confidence: trials line up with full production, and any surprises unwind in development, not in final shipment.
Our technical support team tracks feedback from the ground up: equipment technicians, compounders, shift managers. Repeatedly, we hear that 1-benzimidazolone-4-butyric acid handles cleanly in both closed- and open-system additions. In formulations for fibers and resins, product disperses swiftly without trapping moisture. That means fewer issues with batch-to-batch variability or latent faults in molded goods or extruded films.
In specialty pigment applications, the acid group’s interaction provides long-lasting color hold. Several coatings partners have charted up to 14% longer outdoor life for finished surfaces, driven by fewer free radical breakdowns and sharper UV resistance compared to alternatives with shorter acid chains or non-carboxylate groups.
We also note that the extended butyric side chain unlocks safer and more compatible inclusion in food-contact polymer streams, facing stricter scrutiny from regulators. Coupling agents and melt-processing technicians lean on our material where limits for extractables and leachables grow ever tighter.
The chemical supply world often talks about “greener chemistry,” but progress only shows through measured improvements that endure under operational pressures. On our lines, energy usage sits lower thanks to smooth reaction pathways—less heat wasted, less reprocessing, less downtime. Our waste streams for 1-benzimidazolone-4-butyric acid synthesis read cleaner in COD and BOD assessment, keeping us well inside discharge limits year after year.
We reinvest savings from lower energy and water bills into process optimization and employee skill upgrades, not into discounting or cutting corners. The support and feedback loop from end-users keep our standards honest; batch failures don’t just mean profit loss, they mean disrupted supply chains for people relying on our material to create their own life-improving advances—medicines, materials, and technologies.
Our experience as direct manufacturers of 1-benzimidazolone-4-butyric acid opens up options for custom development at the formulation stage. Working with research labs, pilot plant teams, and scale-up engineers, we adapt synthesis steps, purification routines, and packaging strategies for partners who need to solve new problems. Many specialty projects start with only a target specification—a desired melt profile, solubility window, or impurity cutoff—and we draw on deep process knowledge to craft a fitting solution aligned with real-world constraints.
Our control over the entire workflow—starting reagent sourcing, reaction design, dry down, QC, and final packaging—gives customers a foundation of stability and trust, not just a line in a catalog or a rebranded commodity. The number of successful pilot-to-commercial launches powered by our direct support grows every year.
Nothing beats direct hands-on time with a material. Our operators know the difference between a high-performing batch and a flawed one just from the way a powder flows, settles, or responds to ambient humidity. Dozens of process tweaks and uncounted hours of development work have shaped our current manufacturing method. That work makes our 1-benzimidazolone-4-butyric acid distinct: every bag, drum, or tankerful reflects years of first-hand observation and targeted improvement.
Regular in-process monitoring, dedicated plant maintenance, and constant dialogue with our logistics and tech support teams allow us to refine quality and reliability. Problems never disappear completely, but with reliable feedback and expertise, we address them quickly—before they hit the loading dock or the customer's system.
Over the years, experience has shown us that products like 1-benzimidazolone-4-butyric acid succeed on the strength of careful manufacturing, transparent sourcing, and honest feedback. Piece by piece, we earned status as a go-to supplier not by promises or branding, but by meeting expectations on the ground: reliable performance across industries, documented stability, and practical application support that speeds innovation in the field.
Chemicals end up touching countless lives by way of improved medicines, safer surfaces, longer-lasting materials, and smarter engineered products. The real story behind our 1-benzimidazolone-4-butyric acid is not in the brochures—it shows in factories that run smoother, products that hold up longer, and business relationships built on mutual respect and shared goals. Our doors stay open to new challenges, and our work continues in tandem with customers driving the future of their industries using the backbone of sound, reliable chemistry.