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HS Code |
627233 |
| Inci Name | Isotridecyl Isononanoate |
| Cas Number | 73398-61-5 |
| Appearance | Clear, colorless to pale yellow liquid |
| Odor | Mild, characteristic |
| Molecular Weight | Approx. 468 g/mol |
| Solubility | Insoluble in water, soluble in oils |
| Function | Emollient |
| Melting Point | -27°C |
| Boiling Point | 232°C (estimated) |
| Refractive Index | 1.449 - 1.459 |
| Viscosity | 10-20 mPa·s at 25°C |
| Typical Use Concentration | 1-10% |
| Storage Temperature | 15-25°C |
| Flash Point | >200°C |
| Shelf Life | 24 months |
As an accredited Isotridecyl Isononanoate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Isotridecyl Isononanoate is packaged in a 25 kg white HDPE drum, featuring a secure screw cap and chemical safety labeling. |
| Shipping | Isotridecyl Isononanoate should be shipped in tightly sealed, clearly labeled containers, protected from moisture, heat, and direct sunlight. It is typically transported as a non-hazardous liquid under ambient conditions. Ensure compliance with local and international transport regulations. Avoid contact with incompatible substances and handle with appropriate safety precautions during shipping. |
| Storage | Isotridecyl Isononanoate should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and incompatible substances like strong oxidizers. Avoid freezing and excessive temperatures. Ensure proper labeling and keep away from food and drink. Use appropriate spill containment and follow local regulations for chemical storage. |
Applications of Isotridecyl Isononanoate in Industrial ManufacturingAs the original manufacturer of Isotridecyl Isononanoate, we support core industrial supply chains requiring high-purity, fully-traceable raw materials. The compound plays a decisive role across select segments where its molecular properties deliver distinct processing, formulation, and performance advantages. Explore how manufacturers in specialty cosmetics, technical lubricants, performance coatings, and polymer processing integrate our material to meet stringent industry requirements and deliver consistent product quality. 1. Personal Care Emollients for Skin Creams and LotionsLeading skincare product manufacturers incorporate Isotridecyl Isononanoate to enhance sensory feel, spreadability, and absorption in leave-on emulsions. Its branched alkyl structure provides a lightweight, non-greasy finish with rapid dermal penetration, supporting modern claims of “silicone alternative” or “dry touch” in both mass and premium cosmetic lines. Formulators value its ability to improve emulsion stability alongside esters and natural oil phases for safe, repeatable skin exposure over extended shelf life. Industry compliance standards
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2. High-Performance Industrial Lubricants and Metalworking FluidsIndustrial lubricant formulators use Isotridecyl Isononanoate to reduce friction and improve lubricity in neat oils, soluble oils, greases, and advanced metalworking fluids. Its thermal stability and low volatility enables stable viscosity at elevated processing temperatures. Manufacturers particularly rely on its resistance to oxidation and hydrolysis for applications with challenging metal surface requirements such as stamping, cutting, and forming. The controlled branching supports anti-wear properties while minimizing sludge formation in high-speed industrial machinery. Industry compliance standards
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3. Industrial Coatings and Surface TreatmentsSurface technology manufacturers employ Isotridecyl Isononanoate as a specialized wetting and leveling agent in high-solids, waterborne, and solventborne coating systems. Its branched ester structure enhances pigment dispersion and imparts rapid film formation without plasticizer migration or surface tack, allowing for durable, low-gloss finishes required in automotive parts, consumer electronics, and architectural applications. Quality controls track the impact on scratch resistance, UV stability, and color fastness within multi-layer coating stacks. Industry compliance standards
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4. Polymeric Processing Aids and Plastic AdditivesManufacturers in the polymer industry add Isotridecyl Isononanoate as a highly efficient internal/external lubricant and flow modifier, particularly during the melt processing of technical plastics, thermoplastic elastomers, and engineered blends. The ester’s molecular profile reduces melt viscosity, mitigates die buildup, and prevents surface defects during high-speed extrusion, injection, and calendering operations. Its compatibility with most polyolefins, PVC, and polar engineering polymers enables stabilizing additive systems without undesired migration or yellowing. Industry compliance standards
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5. Specialty Hair Care and Styling Product FormulationsHair product manufacturers leverage Isotridecyl Isononanoate for its superior detangling and gloss-enhancing attributes in both rinse-off and leave-on conditioners as well as styling treatments. Its hydrophobic, branched ester structure imparts smooth combability and increases shine in formulations targeting treated, colored, or frizzy hair, all while resisting buildup and maintaining a lightweight feel. The ingredient undergoes rigorous compatibility testing with cationic systems and synthetic silicones to safeguard long-term product stability and consumer safety. Industry compliance standards
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At our facility, chemists and engineers come together every day to get an honest job done: The precise synthesis, purification, and delivery of reliable specialty esters. Isotridecyl Isononanoate, in particular, stands as a result of years of technical dialog, customer feedback, and deep process engineering. This product, which we label under our standard ITINA series with grade variations suitable for both personal care and industrial use, offers more than a collection of specifications on a data sheet. Our approach with Isotridecyl Isononanoate has always been rooted in technical rigor and an ear to the needs of people who rely on consistent results, batch after batch.
Manufacturers who ask for Isotridecyl Isononanoate are driven by hands-on needs. We don’t settle for approximations— the compound sits squarely in the realm of branched-chain ester chemistry. Colorless, virtually odorless, with a measured low viscosity and a pleasantly light skin feel, its chemical fingerprint features the distinct blend of isotridecyl alcohol and isononanoic acid. This imparts a specific molecular weight and branching that sets the product apart from straight-chain esters or shorter alkyl groups. Quality control in our plant tests not just for content but for subtle markers of purity, such as low acid and saponification values, and ensures water and residual alcohols fall below commonly accepted thresholds.
Many formulators in the personal care and industrial fields come to us with a problem: standard esters run greasy, oxidize too quickly, or fail to spread to the satisfaction of the finished product’s end user. Through careful selection of raw chemical feedstocks, strict column fractionation, and multiple stages of vacuum distillation, our Isotridecyl Isononanoate holds true to its promise—a balance of tactile performance and physical stability.
Clients in cosmetics manufacturing report back with unmistakable trends: skin creams and lotions take on a non-oily feel that improves after application, spreads evenly, and absorbs predictably across skin types. R&D labs confirm, through blind testing, reduced tackiness without importing unwanted volatility or unpleasant residues. We hear often from our industrial collaborators in metalworking fluids or textile lubricants that this ester offers a higher degree of hydrophobicity and thermal stability than alternatives produced from shorter or linear alcohol chains. These are practical qualities, observed in operation, that can’t be chalked up to marketing.
Many suppliers offer the standard roster of C12–C15 alkyl benzoates, isopropyl myristate, or basic fatty acid esters. While these products do a job, each has tradeoffs. For example, straight-chain fatty esters break down more rapidly under UV or heat. Isotridecyl Isononanoate brings oxidative stability and a branching structure that resists breakdown, translating to longer shelf life and better performance in demanding formulations. Formulators often voice frustrations with shorter-chain esters leaving a “quick slip” feeling that vanishes prematurely from the skin. Our product, thanks to its specific alcohol-acid pairing, holds onto a softly lubricating, featherweight touch without falling into heaviness or greasy residue, which customers pick up on, almost unconsciously, when using premium creams or haircare emulsions.
In emulsions, texture and emollience gain direct benefit from Isotridecyl Isononanoate’s molecular shape. R&D labs trying to substitute with alkyl benzoates or common silicones report a cold, sometimes plasticky feel, or a tendency toward ingredient separation under warm storage conditions. More than once, we have reverse-engineered competitor products and found hidden shortfalls: plasticizers that yellow over time, or unwanted volatility that introduces inconsistency. By manufacturing in-house, we control both incoming raw material traceability and every fractionation phase—no unexpected substitutions or off-shade outputs.
On our production line, every batch begins with selection of high-purity isotridecyl alcohol and isononanoic acid, both run through gas chromatography to guarantee true feedstock identity. Batch reactors operate at finely controlled temperatures, monitored by QA teams with direct accountability—the chemists you talk to are the same people overseeing that your order matches what you sampled. Technical staff routinely sample intermediate and finished products, rejecting anything that strays from our agreed parameters on color, acid value, or odor.
Years of scaling up have taught us that keeping things simple and measurable leads to fewer headaches. We’ve kept our processes modular, so if a client needs a slightly altered viscosity or acid value for a unique system, the adjustment doesn’t risk the consistency of our core product. Feedback from our Asian and North American clients showed a need for better cold storage stability; after several pilot runs, we optimized our formulation and post-synthesis cleanup to push cloud point and cold filter plugging point values to more reliable, lower temperatures.
Trace analysis is not an afterthought. European customers working under tight cosmetic regulation demand more than COA compliance—they expect a reproducible, analysis-ready cut that passes both REACH and other global chemical inventories. A team, anchored in both regulatory affairs and bench chemistry, continually refines analytics so unexpected impurities or minor chromophores are flagged before a product leaves our premises. Every finished lot is archived as a retained sample for future cross-check—transparency is not negotiable.
The production of esters relies on handling acids, alcohols, and sometimes strong catalysts. Over years of operation, our site has built in procedures to minimize waste, maximize recycling of process solvents, and keep emissions in check. By integrating energy recovery systems with our esterification reactors, we pull down both our operating costs and our external footprint. The result: clients see not just a greener product story for their own sustainability goals, but also fewer surprises from volatile raw material surges or regulatory shifts.
Plant operators interact directly with everything that leaves our processing tanks, so safety matters. Hands-on training reinforces the right protective gear, and containment systems are designed by people who troubleshoot leaks or spills before they escalate. Local air quality and water standards set boundaries we’ve never been willing to cross. Our drive comes from people who live in the same community—engineers and technicians who take pride in a clean operation, transparent incident reporting, and consistent environmental monitoring.
Manufacturing esters is a technical affair, but business is still about people and relationships. We receive requests for Isotridecyl Isononanoate that vary by region, climate, or the needs of a specific application—say, a Brazilian hair mask manufacturer adjusting for tropical heat, or a Scandinavian skincare brand targeting frost protection. We work directly with the technical staff at these companies to tweak parameters— whether a slight adjustment in refractive index or a tighter control on peroxide value—so that the outcome matches product intent.
Some of our best process innovations start as troubleshooting calls. A customer’s line fouls from excessive buildup; we run a targeted pilot to see if changing feed ratios or post-treatment steps will reduce residue. A personal care brand needs a non-animal-sourced ester with allergen profiles documented and reproducible—our team dives through the process chain and provides full traceability reports. Over time, these collaborations turn into lasting relationships. Our research chemists visit facilities, observe bottling and filling operations, and gather data on unexpected challenges. These insights shape new standards: quicker lead times, more robust packaging, and robust sampling regimes that match real supply chain complexity.
Our clients operate under a patchwork of local and international regulations. Isotridecyl Isononanoate, synthesized in-house from traceable components, carries full documentation for REACH, TSCA, and relevant APAC inventories. During the registration process for new cosmetics or industrial lubricants, our regulatory staff are on call for technical documentation, migration studies, or analysis of trace impurities. The collective know-how from years of dealing with regulatory audits feeds back into improved plant documentation and faster response to customer compliance needs.
New market entrants in natural cosmetics have asked tough questions about sustainability, biodegradability, and potential allergenic compounds. Our team tackles these concerns head-on: we run in-house and third-party OECD biodegradability tests, provide environmental fate data, and flag all CMR risks. Where potential issues arise, such as trace byproducts from catalysts, we work with supply chain partners to remove or reduce unwanted components, so the final product stands up to both technical and ethical scrutiny.
Any experienced chemical manufacturer knows price and delivery risks move fast. Feedstock pricing, from alcohols to acids, can swing within weeks. We anticipate volatility by holding buffer stock and securing longer-term supply deals, so our customers face fewer sudden shocks. Large-volume buyers often want to lock specifications and pricing for up to a year; our account and technical teams review storage, shelf stability, and customs compliance so delivery meets needs across a range of transport conditions.
On the rare occasion a raw material faces disruption, we adapt quickly. In past years, upstream supply hiccups—due to strikes, weather, or global demand surges—have endangered continuity. Our team maintains alternate sourcing arrangements, tracking feedstock lots by batch and origin, and running small-scale validation runs before scaling back up to commercial quantities. This kind of flexibility distinguishes a true manufacturer from mere product brokers; switching suppliers midstream on critical inputs risks off-spec product and downstream failures. We absorb that risk on our side before anything ever reaches a customer’s production line.
One significant advantage of our manufacturing process lies in real-world customer feedback. A major Asian sunscreen provider struggled with residue left by silicone-based emollients; after months of lab and pilot runs, the switch to Isotridecyl Isononanoate yielded a sunscreen formula that set faster and dried without a heavy after-feel. Consumer metrics tracked lower complaint rates for stickiness. In another setting, a niche European textile company needed a lubricant that wouldn’t gunk up looms at high speed or leave deposits under combined heat and humidity. Our tailored batch, fine-tuned for viscosity and flash point, passed their 24-hour continuous run test without buildup or yellowing. These successes don’t emerge from off-the-shelf choices, but from custom runs that solve specific pain points.
Personal care brands often prefer not to publicize ingredient modifications, but internal quality and complaints data bear out the impact. Lower rates of returned goods, fewer batches flagged for discoloration, and more robust performance over variable storage conditions point to a raw material that delivers on more than just technical paper promises. Our technical team quietly tracks batch codes and field reports to isolate improvement opportunities, contacting formulators directly when quality can be improved further.
No batch chemistry runs perfectly; yield swings, feed impurities, or equipment breakdowns will happen. Years of operation and customer partnership have taught the value of transparency when something goes wrong. If a batch falls outside agreed parameters, we don’t ship and hope the customer won’t notice. Instead, quality leads notify every affected partner and coordinate adjustments, whether a replacement batch or a process recommendation so lines do not stop. This direct approach builds trust and helps us learn from deviations.
Our plant reinvests in new distillation columns, tighter sensors, and more advanced analytics every year. Teams run pilot trials on alternative feedstocks, less energy-intensive process routes, and nonhazardous catalysts to push for greater safety and lower environmental risk. Some long-term clients contribute funding or data to these pilots, knowing that next-generation process improvements will benefit their future product launches. We see these investments as both an operational need and an opportunity to raise the bar—manufacturing is a craft, and pride in craft drives technical improvement.
Building a specialty ester like Isotridecyl Isononanoate is not about chasing the bottom line or stamping out thousands of tons of interchangeable commodity. Each order tells a story—of a product manager’s launch goal, a production supervisor’s operational constraints, or a customer service agent’s need to reduce complaint rates. We respond with the kind of high-touch, technically rooted service that only comes from living in the world of specifications, audits, and finish-line accountability. Every liter speaks for the expertise, flexibility, and investment that goes into consistent, high-quality output.
Sustaining this standard involves constant realignment with evolving market regulations, customer needs, and the reality of chemical supply chains. Our experience is built on thousands of hours troubleshooting with partners, speaking with laboratory staff, and investigating both successes and misfires. The result goes beyond the laboratory: Isotridecyl Isononanoate, as produced in our plant today, stands as both a testament to technical commitment and a core component of forward-looking formulations in personal care and industry.