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Home > Cosmetic Ingredient > Cleansing (Find 681 items)

Cosmetic Ingredient

Cleansing

Find the potential of facial cleanser agents with our array of chemical raw materials. Access CAS NO., properties, and SDS for each ingredient and procure cleansing agent raw materials from certified suppliers, offering comprehensive product information for your formulations.

N-methylmorpholine N-oxide

(7529-22-8)
4-Methylmorpholine N-Oxide is a metabolite of Morpholine (M723725). N-Methylmorpholine N-Oxide is commonly used to dissolve cellulose as well as in the dissolution of of scleroproteins.

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Calcium dodecylbenzenesulfonate

(26264-06-2)
Mainly used in pesticide emulsifier, but also in textile oil agent, tile detergent, grinding oil agent, cement dispersant, etc. This product is used as a detergent and dispersant in diesel, engine oil, pressurized diesel, and engine oil. This product is the main component of a mixed emulsifier compounded with organic chlorine, organic phosphorus, herbicide and other pesticide emulsions. It can be used as an anionic surfactant and also as a pesticide emulsifier. It is mixed with non-ionic surfact

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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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Cocoa butter

(8002-31-1)
cocoa butter softens and lubricates the skin. This yellowish vegetable fat is solid at room temperature but liquefies at temperatures between 90o–100oF (32.2o–37.8oC). Thus, it is frequently used in lip balms and massage creams because of its favorable melting point (i.e., close to body temperature). Cocoa butter is considered comedogenic and may cause allergic reactions. Cocoa Butter is the fat obtained by pressing chocolate liquor, obtained from roasted cocoa nibs, to yield cocoa butter and p

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Polyethylene glycol sorbitan trioleate

(9005-70-3)
Lonzest(R) STO-20 is a mid-range HLB, nonionic surfactant suggested for use in textile chemicals (lubricant, emulsifier), household products (o/w emulsifier) and cosmetic formulations (o/w emulsifier).

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Mirataine CB

(86438-79-1)
cocamidopropyl betaine is a surfactant derived from a coconut oil salt. It is particularly effective in shampoos, foam baths, shower foams, and other preparations where high, creamy foam and good skin tolerance are desired. Cocamidopropyl betaine is an amphoteric surfactant, which enjoys increasing popularity among cosmetic chemists because of its low potential for irritation of the skin. It is used especially in shampoos and bath products such as bath and shower gels. Most cases of allergy are

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Nonaethylene glycol p-nonylphenyl ether

(14409-72-4)
Nonoxynol 9 is a reagent used to prepare compounds that show spermacidal activity. It is also a polyoxyethylene surfactant that shows toxicity to certain wildlife.

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Cleansing ingredients refer to substances that can moisturize the body surface, emulsify or dissolve oils, suspend dirt, and have foaming properties. Currently, common types of cleansing ingredients on the market can be roughly categorized into four groups: soap-based, SLS/SELS, amino acid type, glucoside and betaine type. Since a single product cannot meet the dual requirements of effective cleansing and gentleness, the current market trend leans towards composite formulations that combine different cleansing ingredients. "Cleansing" on ECHEMl primarily provides raw materials of cleansing, including those that contribute to foaming.

More Information

The mechanism of cleansing agents involves their ability to interact with both water and oil-based substances. Surfactants, the primary active ingredients in cleansing formulations, possess hydrophilic (water-attracting) and lipophilic (oil-attracting) properties. When applied to the skin or hair, surfactants lower the surface tension of water, allowing it to penetrate and wet the surface while simultaneously attracting and binding to oils and other hydrophobic substances.

As surfactants bind to oil and dirt particles, they form micelles, tiny structures that encapsulate the impurities, making them easier to rinse away. Additionally, cleansing agents may contain emollients and conditioning agents to help maintain the skin's natural moisture barrier and prevent dryness or irritation.

Common ingredients found in cleansing products include:

● Sodium lauryl sulfate (SLS) and sodium laureth sulfate (SLES)

● Cocamidopropyl betaine

● Glycerin and other humectants

Frequently Asked Questions

What is cleansing in skincare?

Cleansing in skincare refers to the process of removing dirt, oil, makeup, pollutants, and impurities from the skin’s surface. It is the foundational step in any skincare routine and helps maintain skin health, prevent clogged pores, and prepare the skin for subsequent treatments like serums or moisturizers. Effective cleansing supports overall skin clarity and can reduce the risk of acne and irritation.

How often should I cleanse my face?

Dermatologists generally recommend cleansing your face twice daily—once in the morning and once at night. Morning cleansing removes sweat and oil accumulated overnight, while evening cleansing eliminates makeup, sunscreen, and environmental pollutants. Over-cleansing (more than twice a day) may strip natural oils and disrupt the skin barrier, especially for those with dry or sensitive skin types.

What type of cleanser is best for my skin type?

The ideal cleanser depends on your skin type:- Oily skin: Gel or foaming cleansers with salicylic acid or tea tree oil help control excess sebum.- Dry skin: Cream or milky cleansers with hydrating ingredients like glycerin or ceramides are gentle and nourishing.- Sensitive skin: Fragrance-free, hypoallergenic formulas with minimal ingredients reduce irritation risk.- Combination skin: Balanced, pH-neutral cleansers work well across different zones.Always patch-test new products and avoid harsh sulfates if you have reactive skin.

Can cleansing cause skin irritation?

Yes, improper cleansing can lead to skin irritation. Using overly aggressive cleansers, hot water, or excessive scrubbing may damage the skin barrier, causing redness, dryness, or sensitivity. Ingredients like high concentrations of alcohol, synthetic fragrances, or strong surfactants (e.g., sodium lauryl sulfate) are common irritants. To minimize risk, choose gentle, dermatologist-tested cleansers suited to your skin type and use lukewarm water with soft motions during cleansing.

What’s the difference between cleansing and exfoliating?

Cleansing removes surface-level impurities like dirt, oil, and makeup, while exfoliating targets dead skin cells on the skin’s surface or within pores. Cleansing should be done daily, whereas exfoliation is typically recommended 1–3 times per week depending on skin tolerance. Over-exfoliating can compromise the skin barrier, so it’s important to distinguish between the two steps and use appropriate products for each purpose in a balanced skincare regimen.

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