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HS Code |
632705 |
| Inci Name | Sodium Sesamoyl Amphoacetate |
| Chemical Class | Amphoteric surfactant |
| Cas Number | 131779-09-8 |
| Appearance | Clear to yellowish liquid |
| Solubility | Water soluble |
| Ph Range | 6.0 - 8.0 (10% solution) |
| Function | Mild cleansing agent |
| Origin | Derived from sesame oil |
| Foaming Ability | Good foaming |
| Biodegradability | Biodegradable |
| Irritation Potential | Low |
| Applications | Shampoos, facial cleansers, body washes |
| Shelf Life | 2 years when stored properly |
| Storage Conditions | Store in a cool, dry place |
| Molecular Weight | Variable (mixture of compounds) |
As an accredited Sesamoyl Amphoacetate Sodium factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The chemical is packed in a 500g white HDPE bottle with a blue screw cap, labeled with product details and safety warnings. |
| Shipping | Sesamoyl Amphoacetate Sodium is typically shipped in tightly sealed, corrosion-resistant containers to prevent moisture absorption and contamination. It should be transported under cool, dry conditions, away from incompatible substances. Shipping must comply with local chemical regulations, and safety documentation, such as the SDS, should accompany the package to ensure safe handling upon arrival. |
| Storage | Sesamoyl Amphoacetate Sodium 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. Protect from moisture and temperature extremes. Ensure proper labeling and keep out of reach of unauthorized personnel. Avoid storing near strong oxidizers or acids to maintain chemical stability and safety. |
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Sesamoyl Amphoacetate Sodium is a high-performance amphoteric surfactant derived from sesame oil, renowned for its mildness and compatibility with anionic, nonionic, and cationic ingredients. Our material undergoes stringent process controls at every stage, supporting manufacturers in diverse sectors with consistent quality and traceability. Below, we outline core downstream industrial applications, detailing specific compliance requirements, quantifiable use levels, process integration points, and representative finished goods as observed in global market practice.
Manufacturers of sulfate-free shower gels, baby shampoos, and facial cleansers incorporate Sesamoyl Amphoacetate Sodium for its low irritation profile, superior lather stability, and enhancement of texture in mild formulas. It serves a key role in modern cleansing bases for sensitive skin demographics, especially in products seeking an “ultra-mild” or “tear-free” claim profile under high transparency scrutiny. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Oral Care: Toothpaste and Mouthwash FormulationsMajor oral care manufacturers utilize Sesamoyl Amphoacetate Sodium to create foaming toothpastes and mouth rinses targeting sensitive user segments and premium whitening products. Its mildness and minimal taste interference properties are critical in dental formulas where oral mucosa compatibility and flavor-preserving surfactancy are essential. Industry compliance standards
Typical usage ratio
Downstream process integration
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3. Pharmaceutical Preparations: Dermatological WashesPharmaceutical companies leverage our material as a dermatologically compatible surfactant in medicated skin washes where gentle cleansing and pharmaceutical excipient standards are mandatory. It facilitates actives delivery in foaming or emulsified medicinal products without compromising on irritancy thresholds, a crucial aspect in prescription and OTC skin therapy. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Industrial Detergents: Precision Electronics CleaningWithin the electronics industry, Sesamoyl Amphoacetate Sodium is implemented by manufacturers of microelectronic parts washers and maintenance fluids, meeting requirements for residue-free, contact-safe cleaning where static build-up and ionic contamination must be minimized for sensitive circuits and assemblies. Industry compliance standards
Typical usage ratio
Downstream process integration
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5. Textile Auxiliaries: Wetting and Dispersing Agents for FinishingTextile processors use this material in wet processing to impart fast, uniform wet-out and stable dispersion of finishing agents on cotton, modal, and technical fibers. Its compatibility with cationic softeners and pigment dispersions enhances process reproducibility for advanced finishing lines producing skin-contact fabrics for the medical and functional apparel markets. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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Competitive Sesamoyl Amphoacetate Sodium prices that fit your budget—flexible terms and customized quotes for every order.
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Most people searching for surfactants for personal care, household, and specialty applications run up against the challenge of balancing mildness with effectiveness. As a chemical manufacturer facing those same demands, our work on Sesamoyl Amphoacetate Sodium comes directly from feedback in the field and decades of formulation science. In daily production, teams stand right next to the mixing vessels, checking clarity, pH, and residual levels. No abstract laboratory: our story starts with real liquid, powder, or paste moving off factory lines, ready for testing in robust, often demanding applications.
In production, we focus on the type with the CAS Number recognized by major regulatory bodies for compliance in cosmetic safety and homecare development. The model circulating through our reactors matches requirements in cleansing, foaming, and compatibility testing. Our batches carry a typical concentration of the active matter at over 35%, adjusted for system stability and long shelf life under standard storage. As chemists who see downstream mixing first-hand, this experience grounds every insight we share with users and partners throughout the process chain.
Years of trial and refinement showed us the difference between standard amphoacetates on the market and what’s possible with sesamoyl-modified versions. With conventional surfactants, formulating gentle shampoos or sensitive skin cleansers leaves you walking a narrow path between cleaning power and the chance of irritation. In our plant’s test sinks, we notice how Sesamoyl Amphoacetate Sodium changes that game. Its molecular backbone, sourced from natural sesame oil derivatives, brings excellent mildness to formulas—customers have told us it helps reduce itchiness and dryness over standard betaines, especially after repeated use.
We see this mildness echoed across projects for baby products, facial cleansers, and intimate hygiene. Where sulfated surfactants strip too much oil, and other amphoteric choices fall short on foam, our hands-on results show a rich, dense lather with a soft after-feel. This performance holds up in both hard and soft water. The plant’s QC team records every batch for clarity and foam height, so when a new order ships, we know it lasts from warehouse to bathroom shelf. Chemists with their sleeves rolled up, reviewing raw material consistency, spot common questions all the time—mainly about stability with acids, oxidizing agents, or cationic additives. Our version shines because we employ reaction conditions that lock in structural integrity at each interface.
Controlling pH is a challenge for some competitors. We learned early that keeping the solution in the mildly acidic to near-neutral range (usually around 6.5-7.5) maintains solubility and keeps products from going cloudy. Some manufacturers cut corners—equipment operators notice residue buildup or separation after a few weeks in storage. In our operation, every technician tracks heat stability, color retention, and even salt tolerance in salty water washes. Repeated rinsing on hair tresses, soft blankets, or plastic surfaces uncovers subtle differences. Finished samples hold up in the field during months-long pilot tests; this comes not from luck but from strict control over raw sesamoyl acid feedstocks and carefully sequenced neutralization.
Formulators trust our Sesamoyl Amphoacetate Sodium because it gives them flexibility. Combining it with anionic surfactants, like sodium laureth sulfate or alkyl ether carboxylates, often enables a richer, creamier foam and a less irritating solution. Our customers in the children’s care segment noticed less stinging when test panels applied cleansers to the eyes, a difference they told us matters most for repeat buyers and reputation management. Even in adult facial and body washes, persistent use showed measurable improvements in transepidermal water loss compared to other amphoacetates without a sesamoyl backbone.
Standard amphoacetates, such as cocamidopropyl or lauramidopropyl, saturate the global market. Prices fall, and margins shrink, tempting shortcuts. We’ve watched suppliers fade when formulations split or polarize at low temperatures or form hard gel when used in concentrated systems. Our Sesamoyl Amphoacetate Sodium, through careful selection of side-chain length and degree of substitution, resists thickening into an unworkable paste even at high actives. The input we collect from industrial laundry partners reveals the difference during tank transfers: less clogging, smoother dilution, and easier mixing with hard water. This translates directly to less downtime and more predictable dosing through in-plant systems or warehouse dispensing equipment.
In rinse-off products, customers crave something mild but strong enough to wash away dirt, excess sebum, and environmental buildup. We field feedback from both user panels and pilot manufacturing lines: our version stands out because the sesamoyl tail brings inherent lubricity and soft condition. Physical-chemical properties—viscosity, active content, ash level, and color—reflect these differences. There’s no one-size-fits-all solution, but formulators tell us that adding 2-10% of our product as the main amphoteric helps stabilize viscosity, boosts foam, and softens feel, even when paired with plant-derived anionics or gentle nonionics.
Sitting through years of green chemistry conferences, we watched as brands pushed for lower toxicity, better biodegradability, and minimal allergenicity. Our product draws its backbone from sesame—an oilseed prized for its natural antioxidants and long history in human use. While no ingredient escapes the possibility of allergy, the processes we use remove allergenic protein residues. Batches routinely test negative for residuals over government-imposed detection thresholds; here, our approach is simple: full traceability and open-door access for customer audits. Not all manufacturers commit to this level of transparency. As innovations roll out, our R&D group scouts for new routes with even cleaner residue profiles, including enzyme-aided transamidation, to further decrease unwanted byproducts and broaden application approvals (such as ECOCERT for organic cosmetics).
Environmental safety teams come through our facilities for third-party audits. Every report we share details surfactant breakdown rates, toxicity curves for aquatic life, and bioaccumulation risks. Our Sesamoyl Amphoacetate Sodium degrades rapidly in standard conditions, minimizing sewerage and river impacts. After years supplying this material to global blenders, we’ve tracked real-life data on wastewater handling; compared to conventional amido-based amphoterics, our output delivers lower chemical oxygen demand and fewer flagged effluent peaks.
Our partners in shower gel, cleanser, and specialty liquid manufacturing keep pushing for fresh value propositions—vegan claims, low-carbon footprints, and reduced microplastic pollution. Sesamoyl Amphoacetate Sodium delivers the flexibility to hit these demands. Our own in-house team worked with formulation partners to replace PEGs and sulfate surfactants, crafting products that earned positive user scores for both performance and ingredient simplicity. We’ve seen the impact on plant run-time and on-shelf performance; packaging compatibility stands out, with bottles remaining clear and sediment-free after transport across hot climates.
The innovation process doesn’t stop at launching one blend. Working in our technical center, chemists tweak concentrations and blending orders to fit new ingredients: botanical extracts, essential oils, or advanced silicones. Recent trials focused on reducing preservative loads—our surfactant showed less microbial contamination than other amphoterics, not because it’s an antimicrobial itself, but because it creates conditions less favorable for growth of common spoilage organisms. This gave customers longer shelf life in formulations, an advantage measured in weeks not always captured in white papers but deeply valued by the industry.
Every run in our mixers and reactors pushes us to improve batch quality and consistency. Basic parameters—pH, viscosity, color—remain under constant watch, so line operators catch changes quickly. We use advanced inline spectroscopy to check for completeness of the reaction between sesamoyl acid and sodium aminoacetates. This process yields a clear solution, free from excess foaming agents and hard-to-remove tints. In handwash trials, both lab and pilot plant findings match: the resulting solution dilutes easily, builds a balanced lather, and leaves no sticky after-feel.
Our application teams spend time in customer factories, supporting scale-up. We learn firsthand about the difference between laboratory samples and full-scale runs. Industrial partners say our product’s consistent flow properties help lower downtime on filling lines and dosing pumps—nose-to-the-grindstone feedback that shapes new process controls. For automatic warehouse batching systems or manual-add setups, repeated trials showed no clogging in pipework, a challenge that often derails production with other, more waxy amphoterics. Every failed batch adds costs that ripple down the supply chain. We absorb that lesson deeply; engineering feedback cycles right back into process improvement projects.
Manufacturers constantly weigh cost, function, and end-market claims. Near-commodity amphoacetates or betaines offer reliable cleaning but fall short where mildness, sensory quality, or allergenic risk need to be minimized. Common cocamidopropyl versions can suffer from residual amides, unreacted agents, or susceptibility to nitrosamine formation—an area where European and US regulations keep tightening. Our Sesamoyl Amphoacetate Sodium, benefit from a unique oil-derived tail, brings extra emollience while keeping nitrosamine risk low by tightly controlling secondary amine inputs and process temperature.
In formulas made for discerning or sensitive consumers, it’s not enough to blend in a generic surfactant and expect positive reviews. We gather panel scores not just from finished product buyers, but from line operators, QA chemists, and even packaging teams. Their input highlights residual tackiness, off-odor, or after-rinse feel—often overlooked by superficial spec sheets. Over time, our Sesamoyl Amphoacetate Sodium delivered clear sensory advantages. The reason is simple: its balance of hydrophilicity and hydrophobicity, combined with a naturally derived long-chain modification, quickly disperses yet forms resilient micelles in solution.
Competing amphoterics in the open market, especially low-cost imports, sometimes feature high salt loads, off-spec color, or inconsistent solids. Our production lines run tighter process windows. Every tank drawdown, tote fill, and final check puts batch data in front of operators. By standing behind our product, we offer customers the reassurance of traceable feedstocks, reproducible quality, and transparency. Following E-E-A-T principles means sharing actual production experience and allowing partners to visit the facility, observe real-time processing, and take their own samples for independent review.
This transparency outpaces desk-bound marketing copy or bulk commodity claims. Frequent spot testing in our analytic lab helps us intervene before product drifts from proven benchmarks. Cross-functional teams—from synthesis to shipping—stay involved. If a customer flags a viscosity hiccup or phase separation, we work the issue through root cause analysis, not generic troubleshooting. Our customers count on this vigilance; partnerships rely on trust, not just spec points. This attitude defines the standard we expect for Sesamoyl Amphoacetate Sodium, and for every other product we make.
Pandemic years, shipping bottlenecks, and raw material swings exposed weaknesses in chemical supply chains worldwide. We shifted sourcing contracts and doubled down on long-term supplier relationships for base oils and amino-acid components. In-house inventory tracking, lot-by-lot audit records, and just-in-time delivery platforms form the backbone of our resilient process. This means emergency orders, project scale-ups, or supply interruptions get rapid attention and actual material flow, instead of just promises on a screen.
Large CPG customers give us feedback about the value this brings: fewer recalls, less downtime in their own factories, and a sense that they control their timelines—not the other way around. For product development teams working on new launches, this reliability lowers risk. We know from experience that this is what keeps supply contracts renewed year after year. When our Sesamoyl Amphoacetate Sodium ships out, it leaves with a trail of records as proof that it meets both legal standards and customer expectations for real-world performance.
Marketing departments talk a lot about green chemistry, but actual chemical manufacturing for green solutions runs deeper. Our Sesamoyl Amphoacetate Sodium leverages sesame oil from traceable, certified sources. Waste minimization occurs throughout processing—recycled cleaning water, minimized waste acid, and full solvent recovery. LCAs tracked by our environmental team show lower total greenhouse gas emissions from our process line compared to conventional coconut- or palm-based amphoteric sourcing. This isn’t a theoretical metric: it shapes procurement, investment, and energy choices day in, day out.
We’ve phased out outdated solvents, converted storage systems to newer, more corrosion-resistant materials, and engaged directly with farm co-ops to secure oil with minimal agronomic impact. Customers, from niche organic brands to global retail chains, value this down-to-earth documentation. They check our EU REACH and US TSCA registrations, but the deeper bond comes from open audits and shared project histories. Over the last decade, our sustainability journey translated into a more reliable, better-performing amphoteric surfactant—one that consistently wins benchmarks in mildness, cleaning power, and environmental safety.
We see the products our customers manufacture—foaming washes, liquid detergents, baby bath formulas—in real-world use. Children’s hospitals, hotel chains, boutique spas, and mass-market retailers all demand performance under vastly different conditions. Our Sesamoyl Amphoacetate Sodium proves itself through every pump, squeeze, and rinse. Their feedback forms a loop back to our QC labs, shaping both incremental improvements and larger innovation projects. This ongoing dialogue with actual users—workers on the line, buyers in the warehouse, and chemical engineers fine-tuning pH or viscosity—creates value that’s real, measurable, and lasting.
Technical support isn’t an afterthought for us; it’s built into the relationship. We guide new formulators through compatibility checks, propose solutions for hard water, and share the latest data from accelerated aging studies. Our internal audits take customer outcomes seriously—batches that perform in our test rooms have to replicate that in production environments, from filling lines in Asia to cold warehouses in Europe. We’ve learned that even tiny upsets in process or purity show up in the final product. This attention to detail defines our manufacturing approach.
Chemical manufacturing, especially for personal care and cleaning surfactants, remains competitive and rapidly changing. Brands push for short ingredient lists, proven safety, lower carbon, and transparent sourcing. Large-scale formulators sometimes get pulled toward commodity-grade amphoterics to save pennies, but feedback from end users quickly reveals the trade-offs—harshness, instability, consumer complaints, or even returned batches. R&D must move quickly but never at the expense of safety and predictability. In every area—raw material sourcing, reaction control, packaging choice, waste management—we see clear opportunities for further gains, not just for ourselves but across the supply chain.
We keep investing in greener synthesis, smarter process control, and direct customer support to hold that lead. From our factory floors to the labs and out into the communities using products every day, our Sesamoyl Amphoacetate Sodium earns its place through hard evidence, not just promise. This is why manufacturers, startups, and big brands come back to source this product year after year. At the end of the day, the true worth of any chemical ingredient shows in who uses it, how it performs, and how well it aligns with the world’s shifting needs. Through transparency, robust supply, and careful engineering, we make that promise real—batch after batch, gallon after gallon.