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Anionic Surfactants

Anionic surfactants examples include alkyl sulfates, alkyl ether sulfates, and alkyl aryl sulfonates. Lineal anionic surfactant is categorized as surfactants on their heads that contain anions when dissolved in water. Explore product information including CAS NO., properties, and technical data for high-quality materials from our certified suppliers to enhance the performance of surfactants.

Sodium dodecyl sulfate

(151-21-3)
1. Surfactants, decontamination, foaming, wetting agents, etc. 2. Relatively low-level ion pair reagents are cheaper than heptane and sodium pentane sulfonate when the requirements are not high. 3. Used as raw materials and modified materials 4, capillary electrophoresis analysis, additives, generally used as a molar solution5, other analytical methods will also be used, such as flow column analysis. Used as washing and textile auxiliary, also used as toothpaste foaming agent, fire-extinguishing

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Sodium dodecylbenzenesulfonate

(25155-30-0)
Used as textile printing and dyeing auxiliary; used as silk printing, penetration and degumming refining auxiliary; GB276-96 stipulates as processing auxiliary for food industry. Anionic surfactant. It has excellent foaming power and detergency. Use Anionic surfactants. Because of its low production cost and good performance, it has a wide range of uses. It is the most used synthetic surfactant for household detergents. It also produces some inorganic salts such as magnesium and calcium and orga

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Sodium lignosulfonate

(8061-51-6)
1. Binder for ceramics, dispersing agent for pigments and in water treatment, stabilizer for wax and O/W emulsions, and tanning agent.
2. Dispersing agent for dyestuffs, wax emulsions, pigments, water treatment and cleaners.

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Sodium allylsulfonate

(2495-39-8)
Used as nickel plating auxiliary brightener in nickel plating process. The general dosage is 0.1~0.2g/L. Nickel plating brightener, can improve the positioning and ductility of metal; used in synthetic fiber, electroplating nickel brightener, water treatment agent, mud additives, etc.; used as pharmaceutical intermediate; used as the third monomer of acrylic fiber to improve fiber It can also be used as electroplating brightener, water quality stabilizer, and mud additive. Biochemical Research

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Sodium methylenebis(naphthalenesulfonate)

(26545-58-4)
Used as stabilizer for rubber industry latex, dye diffusion agent and leveling agent. It is also used as a water-reducing agent and reinforcing agent for concrete, pesticide dispersant, and tanning agent for leather industry.

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Sodium dodecylsulfonate

(2386-53-0)
Used in industrial detergents, textile industry cleaning agents; dyeing auxiliaries, flotation agents for mineral processing. It is the main ingredient of detergent. It is often used in the DNA extraction process to denature the protein and separate it from the DNA. This product is an anionic surfactant, widely used in pesticides, fertilizers, metals, building materials, rubber, textiles, emulsifiers, floating agents, foaming agents, penetrants in the printing and dyeing industry, etc.

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Sodium stearate

(822-16-2)
Sodium Stearate is an inorganic compound with the formula C₁₈H₃₅NaO₂, belonging to the fatty acid salt class. This compound is a sodium salt form of Stearic Acid, which usually appears as a white or yellowish crystalline powder. It has unique hydrophilic and hydrophobic properties that make it excellent in a variety of applications. In the cosmetics industry, Sodium Stearate is commonly used in skin care and cosmetics as an emulsifier and thickener to help stabilize the product's formulation and improve the sense of application, making the product more delicate and easy to apply. In terms of cleaning agents, Sodium Stearate, as one of the main ingredients in detergents and soaps, can provide good foaming and cleaning properties, and effectively remove stains and oils. In addition, in the field of food additives, Sodium Stearate can be used as an emulsifier to help improve the texture and stability of the food, making the food more delicate and taste better. In terms of industrial applications, Sodium Stearate is also widely used in the plastics, rubber and coatings industries as an additive to improve the physical properties and processing characteristics of products, and improve the quality and durability of products.

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SODIUMDODECYLSULFATE

(751-21-3)
sodium lauryl sulfate is a base surfactant, foaming agent with good foaming properties, dispersant, and wetting agent. Formulators have found it ideal for designing cleansers and soaps packaged with pump dispensers. However, it is considered among the most irritating surfactants associated with skin dryness and redness. often, it is either replaced by less irritating but related surfactants such as sodium laureth sulfate, or anti-irritant ingredients are incorporated into the formulation togethe

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Sodium butylnaphthalenesulfonate

(25638-17-9)
This product has excellent penetration, wetting, emulsification, diffusion and foaming properties. In acid resistance, alkali resistance, hard water resistance and inorganic salt resistance, adding a small amount of salt can greatly increase the penetration. It is widely used in various processes in the textile printing and dyeing industry, mainly used as a penetrating agent and wetting agent, and can also be used as a detergent, dye aid, dispersant, insecticide and herbicide.

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Anionic surfactants are the products with the longest history, the largest output and the most varieties among surfactants. They are negatively charged surfactants that ionize in water and play a part in surface activity. Structurally, anionic surfactants are divided into four categories: carboxylates, sulfonates, sulfates and phosphates. "Anionic Surfactants" on ECHEMI mainly supplies chemicals for anionic surfactants.

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Lineal anionic surfactants also known as long-chain anionic surfactants are a group of surface active agents that have attracted much interest worldwide due to their excellent washing and emulsifying properties. These ionic molecules comprise a polar hydrophilic head group and a nonpolar lipophilic hydrocarbon tail. The hydrophilic part can be a hydroxyl, carboxylate, sulfate, sulfonate or phosphate group and the hydrophobic tail is generally a long alkyl chain.

The molecular structure of lineal anionic surfactant is quite different and this structural feature is essential when it comes to the performance of the surfactants. Such surfactants, when brought into contact with water, have the hydrophilic head dissociate, thereby creating a negatively charged species generally referred to as the anion. This process of dissociation results in the formation of charges at the interface which improves the surfactant’s capacity to interact with polar and non-polar substances.

It is quite characteristic of lineal anionic surfactants that they effectively decrease the interfacial tension between two non-miscible phases. Thus, being at the phase boundary between these two phases, water and oil, for example, the surfactants reduce the interfacial tension. In this way, the surface tension is lowered and stable emulsions and foams can be formed which is beneficial in many industrial applications.

Applications of lineal anionic surfactants include:

● Pesticide Emulsifiers

● Detergents

● Personal Care Products

● Industrial Cleaners

● Sewage treatment

Frequently Asked Questions

What are anionic surfactants and how do they work?

Anionic surfactants are surface-active agents with a negatively charged hydrophilic head and a hydrophobic tail. They work by reducing surface tension between liquids or between a liquid and a solid, enabling better wetting, foaming, emulsifying, and cleaning performance. Common examples include sodium lauryl sulfate (SLS) and linear alkylbenzene sulfonates (LAS). These compounds are widely used in detergents, shampoos, and industrial cleaners due to their strong cleansing properties.

What are the common applications of anionic surfactants?

Anionic surfactants are primarily used in household and industrial cleaning products such as laundry detergents, dishwashing liquids, and hard surface cleaners. They are also key ingredients in personal care formulations like shampoos, body washes, and toothpastes for their foaming and cleansing abilities. In addition, they serve roles in textile processing, agrochemicals, and enhanced oil recovery due to their excellent emulsification and dispersing capabilities.

How do I choose the right anionic surfactant for my formulation?

Selecting the right anionic surfactant depends on several factors:1. Desired functionality—whether you need high foam, strong detergency, or good emulsification.2. Compatibility with other ingredients in your formulation, especially cationic compounds which may cause precipitation.3. Environmental and regulatory considerations, such as biodegradability and toxicity profiles.4. pH stability and performance under specific conditions (e.g., hard water tolerance).Consulting technical data sheets and working with reputable suppliers can help ensure optimal selection.

Are anionic surfactants safe for use in personal care products?

Many anionic surfactants, such as sodium laureth sulfate (SLES), are considered safe for use in personal care products when formulated within recommended concentrations and purity standards. Regulatory bodies like the FDA and EU Cosmetic Regulation monitor their safety. However, some individuals may experience skin or eye irritation, particularly with stronger variants like SLS. Formulators often mitigate this by combining anionic surfactants with milder nonionic or amphoteric surfactants to improve skin compatibility.

What should I look for when sourcing anionic surfactants from a supplier?

When sourcing anionic surfactants, consider the following criteria:1. Supplier certifications (e.g., ISO, REACH, GMP) to ensure quality and compliance.2. Consistency in product specifications, including active matter content and impurity levels.3. Technical support and documentation, such as SDS and COA.4. Sustainability practices, including biodegradability data and eco-friendly manufacturing processes.5. Reliable logistics and batch-to-batch reproducibility to maintain formulation stability.

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