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HS Code |
750058 |
| Chemical Name | Octenidine Hydrochloride |
| Molecular Formula | C36H62N4O4·2HCl |
| Molar Mass | 625.5 g/mol (anhydrous base) |
| Appearance | White to slightly yellowish powder |
| Solubility | Soluble in water and ethanol |
| Antimicrobial Spectrum | Broad-spectrum (active against bacteria, fungi, and some viruses) |
| Usage | Topical antiseptic and disinfectant |
| Mechanism Of Action | Disrupts microbial cell membranes |
| Ph Range | Effective in pH range 5-9 |
| Cas Number | 70775-75-6 |
| Common Applications | Wound cleansing, skin antisepsis, mouthwash formulations |
| Odor | Odorless |
| Storage Conditions | Store at room temperature, away from moisture and light |
As an accredited Octenidine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Octenidine Hydrochloride, 100g, packaged in a sealed, amber glass bottle with tamper-evident cap and clear labeling for safe storage. |
| Shipping | Octenidine Hydrochloride is shipped as a non-hazardous chemical under normal conditions. It should be packed in tightly sealed containers, protected from moisture and direct sunlight, and kept at ambient temperature. Compliance with local and international transport regulations is required to ensure safe and secure delivery. Avoid contact with incompatible substances. |
| Storage | Octenidine Hydrochloride should be stored in a tightly closed container, protected from light and moisture. Keep it at room temperature, ideally between 15°C and 25°C (59°F–77°F). Store in a well-ventilated, cool, dry place, away from incompatible substances such as strong oxidizers. Always keep out of reach of unauthorized personnel and follow local safety regulations for chemical storage. |
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Purity 99%: Octenidine Hydrochloride with purity 99% is used in surgical site antisepsis, where it achieves rapid and broad-spectrum microbial reduction. Molecular weight 623.16 g/mol: Octenidine Hydrochloride with molecular weight 623.16 g/mol is used in wound healing solutions, where it ensures consistent bioactivity and efficacy against pathogens. Aqueous solubility 7.5 mg/mL: Octenidine Hydrochloride with aqueous solubility 7.5 mg/mL is used in topical disinfectant formulations, where it provides optimal active concentration for prolonged antimicrobial activity. Particle size <10 µm: Octenidine Hydrochloride with particle size <10 µm is used in pharmaceutical sprays, where it enables uniform dispersion and enhances contact efficacy. Stability temperature up to 60°C: Octenidine Hydrochloride with stability temperature up to 60°C is used in hospital cleaning agents, where it maintains antimicrobial effectiveness during storage and usage. Melting point 180-190°C: Octenidine Hydrochloride with melting point 180-190°C is used in medical device coatings, where it supports thermal processing without degradation of active properties. pH stability range 4-9: Octenidine Hydrochloride with pH stability range 4-9 is used in ophthalmic antiseptic solutions, where it guarantees reliable antimicrobial action across a range of physiological conditions. |
Competitive Octenidine Hydrochloride prices that fit your budget—flexible terms and customized quotes for every order.
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Tel: +8615365186327
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Octenidine Hydrochloride stands out every time we pull a new batch from the reactor, a highly active antiseptic trusted by both health professionals and industry experts around the globe. In our own plant, years of hands-on production have made us familiar with its quirks, strengths, and what it takes to deliver a consistent result daily. We know that every customer is asking for reliability as much as chemistry, and there is no room for shortcuts. Watching our team follow through each step of its synthesis, we see the difference each decision makes. Every shipment reflects a chain of care from raw material choice to packaging, not a faceless handoff from a trading spreadsheet. The pride comes not from paperwork, but from knowing what’s in the drum and what it will do in a hospital, wound care center, or laboratory.
We produce Octenidine Hydrochloride as a fine, free-flowing powder, white or nearly so, easily dispersible in water. There is only one model as far as chemical structure goes, since the active component—N,N'-[1,10-decanediylbis(oxy)]bis[ethaniminium] dichloride—remains the same, batch after batch, process step after process step. We focus on highly controlled particle size and exceptionally low impurity profiles, and we've found over years of batch testing that simple upgrades in powder drying make all the difference in downstream blending at pharmacopeial or industrial scale. Our lots consistently measure over 99% purity by chromatographic assay and maintain residual solvent levels well below European and USP regulatory thresholds.
Customers use our Octenidine Hydrochloride in a range of settings: as an antiseptic for skin, mucous membrane, and wound cleaning; as a raw material for manufacturing mouthwashes or preoperative washing liquids; and for coatings where long-lasting antimicrobial properties count. In the real world of manufacturing, too many folks have been burned by subgrade or inconsistent supplies. That’s why we talk openly about what actually varies: it’s not the base molecule, but unwanted by-products or moisture content from inefficient processing. We can deliver material at required moisture levels—down to less than 1% for sensitive blending operations—because we measure it ourselves, not just trust a supplier’s certificate. This attention to process matters as much as any analytical result. Pharmaceutical manufacturers use our product directly in formulations where clarity and shelf stability can’t be compromised. Cosmetics makers need to keep their dispersions free of micron-sized debris or caking, so our regular particle sizing and sieve analyses reflect what users actually experience in their mixing lines. It’s a product that rewards careful production and punishes inconsistent control.
Octenidine Hydrochloride found its edge by delivering antimicrobial effectiveness broader and longer-lasting than outdated biguanides. During production, I see again and again that customers main concerns revolve around product safety, sustained protection, and ease of integration into existing protocols. Hospitals require assurance that surgical hand disinfection remains thorough and skin-friendly. The pharmaceutical sector seeks agents resistant to microbial adaptation and compatible with excipients without risking degradation. We provide validation data on every batch, supporting popular uses such as wound irrigation fluids, mouth rinses, skin preparations, and even catheter coatings.
Formulators in wound management lean on our Octenidine for rapid biocidal action and barely-there cytotoxicity, matching their demand for treatments that don’t compromise tissue regeneration. We’ve collaborated with companies refining their hydrogel patches, where the loading has to hit the line between clinical efficacy and patient comfort. After years on the floor looking at granular flow problems and shelf-life studies, we know how this material moves and ages, and we’re transparent about lot-to-lot variation. Over-the-counter mouthwash brands need product that preserves stability and clarity even after months on the shelf, so clarity and purity reports come straight from our own labs. Veterinary professionals and animal-care producers appreciate that our tightly controlled heavy metal limit means their usage follows both human and animal safety standards.
Competing antiseptics like chlorhexidine once ruled the scene, but Octenidine Hydrochloride earned its place for several reasons. Its spectrum covers not only Gram-positive and Gram-negative bacteria but also fungi—without losing punch after routine hand washing. Unlike older quaternary ammonium compounds, resistance remains rare, a fact proven in hospital infection monitoring data from peer-reviewed sources. We design our process to avoid common contamination—from residual solvents to pyrogens—knowing that even minor slip-ups can slow regulatory filings or, worse, endanger end users. Some cheaper grades in the market skip these steps, which we see in the form of telltale odor, off-color, or inconsistent solubility. Feedback from customer audits always asks: How fast can you trace a batch? Our in-house records mean a complete chain from raw input to final drum, tested not just for label compliance but for batch-to-batch performance.
Come and look at the differences on our shop floor. In chlorhexidine production, impurity control relies on repeated solvent fractionations; with Octenidine Hydrochloride, direct synthesis yields a cleaner product if you pay close attention to feedstock quality, catalyst residuals, and intermediate handling. Our technicians now spot color changes or viscosity ups and downs in real-time, not days later by lab sampling, so deviations get corrected before final blending—not hidden after the fact. Our material’s longevity in solution, its taste masking in oral rinses, and its very low irritation in topical formulas depend as much on the discipline of the makers as on the chemistry itself.
Customers moving from Povidone-iodine or alcohol-based disinfectants usually report fewer complaints about tissue dryness or staining and better compatibility with dressings, oral appliances, and medical plastics. This didn’t happen by accident; in our own in-vitro compatibility checks each new batch must show negligible interaction with common excipients, hydrogels, or soft-tissue substrates.
In our facility, we do not see Octenidine Hydrochloride as a commodity. Its batch record gets as much attention as any finished drug, whether the destination is a hospital’s central supply, an OEM blending warehouse, or a contract fill line. Cross-contamination, unplanned exposure to high temperatures, or the mixing of partially dried material all lead to common complaints we’ve studied and solved over years of listening to customer feedback. Blenders want material that doesn’t clump or produce dust clouds. Lab staff want clean, easy dissolving with no foamed debris. We learned from early runs that too-rapid drying left micro-cracking and inconsistent cake strength, so we optimized drying time and temperature to balance throughput and quality.
As production scales up, we meet pressure to hold prices steady, but we never cut corners. We still hand-check drums for leakage or contamination, document every step in digital and paper logs, and provide customers with actual process parameters—not generic numbers, but what happened in their batch. We use only high-purity starting materials, ordered in contract quantities and pretested each time a delivery arrives. This controls not just chemical identity, but background ionic content and trace metals—a big concern for those working with parenteral or mucosal applications. We commit to regular external audits and actively support third-party testing as part of annual vendor approval cycles.
We treat our operators as key to product quality—they receive ongoing training and are encouraged to report anomalies immediately. In my own role, I’ve sat in on enough customer qualification calls to know what gets noticed: customers ask more frequently for intellectual property background, raw data from process monitoring, and precise explanations of impurity profiles than ever before. The community expects more than compliance; they want transparency into what differentiates our product from a generic offering coming through two or three layers of intermediaries.
Every batch of Octenidine Hydrochloride enters a routine hands-on analytical program. We never depend solely on certificate data. Upon sampling from the production reactor, we run HPLC/UV and FTIR spectra, as well as direct reporting of water content, sulfate, and chloride levels. Data goes into a record shared with customers on demand—not just summary stats, but the same raw material validation we base our production decisions upon. Any deviation from strict color, odor, and solubility expectations triggers thorough rework or rejection. Our philosophy: get the job completely right the first time, keep errors minimal, and answer customer questions within hours, not days.
We proactively adapt to new pharmacopeial monographs. Years ago, when European Pharmacopoeia monograph updates moved the assay tolerances, our QA techs had already set up validation protocols and recalibrated our own reference standards. We’ve had customers supply their own reference lots for side-by-side blind testing. This willingness to meet the highest standard is what keeps customers coming back. Once, a partner hospital flagged possible trace endotoxins in their ready-to-use fluid; our own parallel testing followed, and rigorous root analysis discovered a supply chain issue with one earlier drum. We initiated an immediate recall, traced every delivery, and closed the loop—all within ten days. It’s these on-the-ground experiences that build real trust with our partners.
Our time making Octenidine Hydrochloride has uncovered a few recurring issues across the field. Inconsistent purity leads to cloudiness or precipitate in solutions. Uncontrolled drying processes result in powder caking, which creates trouble when customers meter the compound into their production silos. Incorrect packaging, such as using non-barrier bags, opens the door to moisture ingress, which in turn promotes hydrolysis over time. Several years ago, we invested in climate-controlled packaging areas and modern drum-sealing technology to address just this challenge. Now, customers opening our shipments after weeks in transit can expect still-dry, free-flowing material.
For international distribution, transport regulations and long warehousing times matter. We shifted from single-wall paper bags to durable, multilayer polyethylene-lined barrels. After feedback from early pharmaceutical clients who noticed trace contamination in outer packagings, we overhauled our SOPs to include drum surface-washing and shrink-wrapped palletizing. This attention to real bottlenecks means fewer product complaints, less waste, and smoother regulatory audits.
From a broader perspective, regulatory scrutiny of antimicrobial agents has only tightened. Many end users now demand full traceability, detailed impurity breakdown, and demonstration of compliance with REACH and related global standards. We keep this information readily accessible and update our documentation as soon as new monograph or transport rules come down from agencies. No customer has ever had to chase us for paperwork after a compliance update—we see it as part of our job to keep the entire supply chain informed and audit-ready.
Adverse reaction reports and environmental monitoring have also changed what customers expect. We never send material without providing full safety data and usage guidelines, but we also invest in ongoing studies of its environmental fate and have adapted our processes so that waste streams are neutralized and below toxic thresholds before leaving our site. Customers working in high-volume manufacturing environments have told us this makes environmental reporting far easier on their end.
End users have asked us to find more sustainable raw material pathways. For the past three years, we’ve been reviewing new green chemistry alternatives, avoiding problematic solvents, and tightening our loop on wastewater recovery. Several of our long-term pharmaceutical partners started taking our suggestions on reformulating their products to limit environmental persistence, using lower concentrations and shorter-term dosing regimens where clinical results supported it. Through these efforts, the overall safety profile and environmental impact have improved for everyone along the chain.
Product excellence isn't the work of a single day or shipment. We maintain long-term contracts with many of the world’s leading medical and pharmaceutical companies and regularly adjust our packaging, labeling, and documentation to their evolving needs. Trusted customers get direct access to our technical teams for troubleshooting—from odd color changes in new blends to sudden shifts in microbial test panels. We’ve had formulators call us in the middle of the night during production scale-up, puzzled over unforeseen foaming or micro-precipitation issues. In all these cases, past batch records and live consultation with our production chemists led to quick solutions before costly downtime or wasted stock.
Our after-sales technical support doesn’t rest on generic call center scripts. Real chemists answer real questions, whether it’s troubleshooting filter clogging due to improper dilution or providing guidance for regulatory submissions in a new country. We believe in building strong, mutually beneficial relationships, which reflect in the willingness of our clients to share feedback and market trends back to us. This reciprocal relationship helps us anticipate shifts in end-user expectations, regulatory changes, or application innovations, ensuring that our Octenidine Hydrochloride remains on the cutting edge of performance and compliance.
Our knowledge base is shaped by those using the product day in and day out. We help partners run pilot batches, analyze storage stability under various conditions, and adjust the particle size distribution or moisture content as their application shifts. This adaptability, grounded in years of practical manufacturing, keeps workflows smooth and outcomes predictable.
Too often, long supply chains obscure the origin of raw materials. Customers get generic data sheets and have no way to check what actually goes into each batch or how old it really is. Working with the factory where Octenidine Hydrochloride is actually made means real traceability, human support, and fast response to questions or issues. Instead of searching for answers from sales intermediaries, buyers can walk the authentication back to every recorded processing step and staff member, backed by verifiable lab results and a history of reliability.
Product recalls throughout the chemical industry often start with mislabeled batches or omissions in handling data. By keeping all records in-house and maintaining inspection-ready documentation, we reduce the risk for partners and assure them that any concern will get addressed with real facts, not just apologies. A short chain of custody means faster recalls if an issue arises—and every customer knows exactly who stands behind their order.
Reliability looks like consistency in the drum, on the production line, and in the finished product. Whether you are in hospital procurement, pharmaceutical blending, or healthcare supply, you expect quality, compliance, and personal accountability. We have built our track record through decades of careful manufacturing and a commitment to full transparency. Working directly with those who make, test, and ship Octenidine Hydrochloride means fewer surprises, stronger safety margins, and a product you trust in the most sensitive applications. With each batch, we invest in not only the science but also in the partnership that brings it to your facility.