{"id":320,"date":"2026-05-13T14:38:46","date_gmt":"2026-05-13T12:38:46","guid":{"rendered":"https:\/\/new.cosmosaromatica.com\/surfactants-types-formulation\/"},"modified":"2026-05-13T14:45:10","modified_gmt":"2026-05-13T12:45:10","slug":"surfactants-types-formulation","status":"publish","type":"post","link":"https:\/\/new.cosmosaromatica.com\/en\/surfactants-types-formulation\/","title":{"rendered":"Surfactants in cosmetics: what they are, their types and why they are key to formulation"},"content":{"rendered":"<p>The global market for <strong>surfactants<\/strong> reached <strong>\u00a340.22 million in 2025<\/strong> and is forecast to reach <strong>\u00a360.84 million by 2033<\/strong>, with a compound annual growth rate of 5.4%, according to <a href=\"https:\/\/www.grandviewresearch.com\/industry-analysis\/surfactants-market\" target=\"_blank\" rel=\"noopener\">Grand View Research<\/a>. These figures are no coincidence: <strong>surface-active agents<\/strong> are present in virtually every cleaning and hygiene product we use daily, from shampoo to facial cleanser.<\/p>\n<p>For formulators and cosmetic brands, understanding what they are, how they work and which ones to choose is the first step towards developing safe, effective and competitive products. At <strong>Cosmos Aromatica<\/strong>, we guide you through everything you need to know!<\/p>\n<h2><strong>What are surfactants and how do they work?<\/strong><\/h2>\n<p>Surfactants are <strong>amphiphilic<\/strong> molecules, meaning molecules that simultaneously possess a <strong>hydrophilic head<\/strong> (affinity for water) and a <strong>hydrophobic tail<\/strong> (affinity for fats and oils). This dual chemical nature is what allows them to act as bridges between two phases that would otherwise not mix: water and lipids.<\/p>\n<p>When a surfactant is added to a liquid, it positions itself at the interface between the two phases and reduces the <strong>surface tension<\/strong> \u2014 that is, the force that holds water molecules together at their surface. By lowering this tension, the liquid wets surfaces more effectively, penetrates fabrics more readily and can carry fat and dirt particles away during rinsing.<\/p>\n<p>Above a certain concentration \u2014 known as the <strong>critical micelle concentration<\/strong> (CMC) \u2014 surfactant molecules cluster into spherical structures called <strong>micelles<\/strong>: the hydrophobic tail is encapsulated in the interior, away from the water, whilst the hydrophilic head points outwards. The micelles trap fat particles in their core and keep them in suspension in the water, facilitating their removal during rinsing.<\/p>\n<p>This mechanism underpins all cleansing <strong>formulation ingredients<\/strong>: the shampoo that cleanses the scalp, the shower gel that removes sebum, or the facial cleanser that removes make-up \u2014 all work thanks to the action of one or more combined <strong>surface-active agents<\/strong>.<\/p>\n<h2><strong>Types of surfactants: classification and key characteristics<\/strong><\/h2>\n<p>Surfactants are classified into four main groups according to the electrical charge of their <strong>hydrophilic head<\/strong>. Each type presents a different performance profile, skin tolerance and compatibility, which determines its optimal use in <a href=\"https:\/\/new.cosmosaromatica.com\/sectores\/cosmetica-perfumeria\/\">cosmetic formulation<\/a>.<\/p>\n<h3><strong>Anionic surfactants<\/strong><\/h3>\n<p><strong>Anionic surfactants<\/strong> carry a negative charge on their hydrophilic head. They are the most widely used in the industry owing to their exceptional foaming capacity and deep-cleansing power. Among their best-known representatives in INCI nomenclature are <strong>Sodium Lauryl Sulfate (SLS)<\/strong> and <strong>Sodium Laureth Sulfate (SLES)<\/strong>, commonly found in volumising shampoos and general-purpose cleaning products.<\/p>\n<p>Their main limitation is the potential for irritation in sensitive or atopic skin, which is why many modern formulations combine them with softening co-surfactants or replace them entirely with better-tolerated alternatives.<\/p>\n<h3><strong>Non-ionic surfactants<\/strong><\/h3>\n<p><strong>Non-ionic surfactants<\/strong> carry no electrical charge, which gives them a high compatibility with other cosmetic ingredients and outstanding skin tolerance. They form the basis of products labelled as &#8216;sulphate-free&#8217;. In INCI nomenclature, notable examples include <strong>Decyl Glucoside<\/strong>, <strong>Coco Glucoside<\/strong> and <strong>Polysorbate 20<\/strong>. Their mildness makes them particularly well suited for use in <strong>shampoo formulations<\/strong> for sensitive scalps, baby cosmetics and daily-use facial cleansers.<\/p>\n<h3><strong>Amphoteric surfactants<\/strong><\/h3>\n<p><strong>Amphoteric surfactants<\/strong> carry a charge that varies according to the pH of the medium: they behave as anionic at alkaline pH and as cationic at acidic pH. This versatility gives them excellent skin tolerance and conditioning properties. The most representative example in cosmetics is <strong>Cocamidopropyl Betaine<\/strong> (cocamidopropyl betaine), widely used as a co-surfactant in <strong>shower gel formulations<\/strong> and shampoos, where its primary role is to soften the detergent base and improve the tactile feel during rinsing.<\/p>\n<h3><strong>Cationic surfactants<\/strong><\/h3>\n<p><strong>Cationic surfactants<\/strong> carry a positive charge and are notable for their conditioning, antistatic and antimicrobial properties. As they carry a charge opposite to that of hair fibres and skin (which carry a negative charge), they adhere to them readily and deposit a protective film. The most commonly used in cosmetics carry INCI names such as <strong>Behentrimonium Chloride<\/strong> and <strong>Cetrimonium Chloride<\/strong>, found in conditioners, hair masks and <a href=\"\/en\/emulsions-in-the-cosmetics-industry-creating-unique-products\/\">softening emulsions<\/a>.<\/p>\n<table>\n<thead>\n<tr>\n<th><strong>Type<\/strong><\/th>\n<th><strong>Charge<\/strong><\/th>\n<th><strong>INCI Example<\/strong><\/th>\n<th><strong>Primary Use<\/strong><\/th>\n<th><strong>Mildness Profile<\/strong><\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td><strong>Anionic<\/strong><\/td>\n<td>Negative<\/td>\n<td><strong>Sodium Lauryl Sulfate<\/strong>, <strong>Sodium Laureth Sulfate<\/strong><\/td>\n<td>Shampoos, gels, cleansers<\/td>\n<td>Low\u2013medium (irritating at high concentrations)<\/td>\n<\/tr>\n<tr>\n<td><strong>Non-ionic<\/strong><\/td>\n<td>Neutral<\/td>\n<td><strong>Decyl Glucoside<\/strong>, <strong>Coco Glucoside<\/strong>, <strong>Polysorbate 20<\/strong><\/td>\n<td>Sulphate-free cosmetics, baby, facial<\/td>\n<td>High<\/td>\n<\/tr>\n<tr>\n<td><strong>Amphoteric<\/strong><\/td>\n<td>Variable (pH-dependent)<\/td>\n<td><strong>Cocamidopropyl Betaine<\/strong><\/td>\n<td>Co-surfactant in shampoos and gels<\/td>\n<td>Very high<\/td>\n<\/tr>\n<tr>\n<td><strong>Cationic<\/strong><\/td>\n<td>Positive<\/td>\n<td><strong>Behentrimonium Chloride<\/strong>, <strong>Cetrimonium Chloride<\/strong><\/td>\n<td>Conditioners, hair treatments<\/td>\n<td>High (conditioning)<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<h2><strong>What is the difference between a surfactant and a detergent?<\/strong><\/h2>\n<p>Confusion between these two terms is common amongst consumers and novice formulators alike. The distinction is clear: a <strong>surfactant<\/strong> is the <strong>active ingredient<\/strong> of a chemical nature that possesses the hydrophilic\u2013hydrophobic dual nature described above. A <strong>detergent<\/strong>, on the other hand, is the formulated and commercially available <strong>product<\/strong> containing one or more surfactants as its principal components, together with other <strong>builders<\/strong> (agents that counteract water hardness), preservatives, fragrances, colourants and pH-adjusting agents.<\/p>\n<p>The relationship between the two concepts can be summarised with a simple analogy: a surfactant is to a detergent what flour is to bread. Without flour there is no bread, but bread also requires yeast, water, salt and the baker&#8217;s skill to take its final shape. In the same way, the surfactant is the functional raw material, but the detergent is the result of a complete formulation.<\/p>\n<p>This distinction is explicitly recognised in European legislation. The <a href=\"https:\/\/eur-lex.europa.eu\/legal-content\/ES\/LSU\/?uri=CELEX:32004R0648\" target=\"_blank\" rel=\"noopener\"><strong>European Chemicals Agency (ECHA) and EUR-Lex<\/strong><\/a> precisely distinguish the concept of &#8216;surfactant&#8217; from that of &#8216;detergent&#8217; within the framework of <strong>Regulation (EC) 648\/2004<\/strong>, establishing separate legal definitions for each.<\/p>\n<h2><strong>Are surfactants biodegradable and safe for the environment?<\/strong><\/h2>\n<p>The answer depends largely on the type of surfactant and its origin. It is worth distinguishing two key concepts that European legislation also differentiates with precision.<\/p>\n<p><strong>Primary biodegradability<\/strong> occurs when a surfactant loses its surface activity, even though the molecule has not yet fully broken down. <strong>Total or ultimate biodegradability<\/strong> \u2014 also known as mineralisation \u2014 occurs when the molecule breaks down completely into carbon dioxide, water and mineral salts, leaving no persistent metabolites. <strong>Regulation (EC) 648\/2004<\/strong>, available in full on <a href=\"https:\/\/eur-lex.europa.eu\/legal-content\/ES\/TXT\/?uri=CELEX:02004R0648-20150601\" target=\"_blank\" rel=\"noopener\">EUR-Lex<\/a>, requires all surfactants marketed in the European Union to meet ultimate biodegradability criteria \u2014 not merely primary biodegradability \u2014 representing a significantly higher level of environmental stringency than in previous decades.<\/p>\n<p>In terms of environmental profile, <strong>plant-based surfactants<\/strong> \u2014 derived from coconut oil, certified palm oil or maize sugars \u2014 generally present lower ecotoxicity and faster biodegradability than their petrochemical synthesis equivalents. <strong>Biosurfactants<\/strong>, produced by micro-organisms through fermentation processes \u2014 such as rhamnolipids or sophorolipids \u2014 represent the most sustainable frontier of this ingredient family. According to <a href=\"https:\/\/www.grandviewresearch.com\/industry-analysis\/surfactants-market\" target=\"_blank\" rel=\"noopener\">Grand View Research<\/a>, the bio-based surfactant segment is the fastest-growing within the global market, with a projected <strong>CAGR of 5.8%<\/strong> through to 2033.<\/p>\n<p>This trend has driven the growth of so-called <strong>eco-friendly surfactants<\/strong>, certified under standards such as <strong>COSMOS<\/strong> or <strong>ECOCERT<\/strong>, whose market share in Europe continues to grow year on year, particularly in the personal care and natural cosmetics categories.<\/p>\n<h2><strong>Surfactants in cosmetic formulation: key factors for choosing the right one<\/strong><\/h2>\n<p>Selecting the right <strong>surfactant<\/strong> for a formulation is not an arbitrary decision. Multiple technical and commercial factors need to be assessed from the outset of the development process. The following are the five fundamental criteria that every formulator should consider:<\/p>\n<ol>\n<li aria-level=\"1\"><strong>Formulation pH. <\/strong>Some surfactants, such as amphoteric ones, are sensitive to pH fluctuations. Anionic surfactants generally work well across acidic-to-neutral ranges, whilst non-ionic surfactants are particularly stable under extreme conditions.<\/li>\n<li aria-level=\"1\"><strong>Target skin type. <\/strong>Sensitive, atopic or infant skin requires mild surfactants \u2014 non-ionic or amphoteric \u2014 with a low irritation index. Formulations for oily skin or body care may better tolerate anionic surfactants.<\/li>\n<li aria-level=\"1\"><strong>Functional objective. <\/strong>Does the formulation prioritise deep cleansing, dense foam generation, residual moisturisation or conditioning action? Each objective calls for a different type or combination of surfactants.<\/li>\n<li aria-level=\"1\"><strong>Compatibility with other actives. <\/strong>Cationic surfactants are incompatible with anionic ones if not formulated correctly. Essential oils, preservatives and colourants may also be affected by the choice of base surfactant.<\/li>\n<li aria-level=\"1\"><strong>Applicable certification and regulation. <\/strong>If the final product aims for <strong>COSMOS<\/strong>, <strong>ECOCERT<\/strong> certification or must comply with <strong>Regulation (EC) 1223\/2009<\/strong> on cosmetic products, the origin and composition of the surfactant are non-negotiable constraints from the design stage onwards.<\/li>\n<li aria-level=\"1\">At <strong>Cosmos Aromatica<\/strong>, we offer a selection of <strong>natural surfactants<\/strong> and synthetic alternatives for all types of formulations: from mild, plant-based surfactants for certified cosmetics through to high-performance foaming bases for conventional cleansing formulations.<\/li>\n<\/ol>\n<h2><strong>Frequently asked questions about surfactants<\/strong><\/h2>\n<h3><strong>Which is the mildest surfactant for sensitive skin?<\/strong><\/h3>\n<p><strong>Decyl Glucoside<\/strong> and <strong>Cocamidopropyl Betaine<\/strong> are amongst the best-tolerated surfactants for sensitive skin. They are of plant origin \u2014 non-ionic and amphoteric respectively \u2014 and present a very low irritation index. At Cosmos Aromatica, we routinely use them as the base in formulations for baby products and dermatological cosmetics.<\/p>\n<h3><strong>Are natural surfactants as effective as synthetic ones?<\/strong><\/h3>\n<p>Generally speaking, yes \u2014 though with some nuances. The latest generation of <strong>natural surfactants<\/strong> \u2014 such as alkyl glucosides \u2014 offer a cleansing capacity comparable to conventional ones, with the added benefit of a better skin tolerance profile and biodegradability. The key lies in the usage concentration and the appropriate combination of types within the same formula.<\/p>\n<h3><strong>Can I combine different types of surfactants in the same formulation?<\/strong><\/h3>\n<p>Yes, and in fact this is common practice in professional formulation. Combining an <strong>anionic surfactant<\/strong> with an amphoteric one \u2014 such as SLS or SLES with Cocamidopropyl Betaine \u2014 improves mildness and tactile feel without sacrificing cleansing power. The only critical restriction is to avoid directly mixing cationic and anionic surfactants without the appropriate formulation precautions.<\/p>\n<h3><strong>Which surfactants are prohibited or restricted in cosmetics in the EU?<\/strong><\/h3>\n<p><strong>Regulation (EC) 1223\/2009<\/strong> on cosmetic products and its subsequent updates set out the lists of prohibited and restricted ingredients applicable in the EU. Certain cationic surfactants with biocidal properties are subject to concentration restrictions. We always recommend consulting the <strong>CosIng<\/strong> database of the European Commission to verify the regulatory status of any surfactant before incorporating it into a formula.<\/p>\n<h2><strong>Formulate with purpose: the right surfactant makes all the difference<\/strong><\/h2>\n<p>A thorough understanding of <strong>surfactants<\/strong> \u2014 their chemistry, classification and environmental implications \u2014 is a genuine competitive advantage for any formulator or cosmetic brand. Choosing the right base surfactant for a product is no minor detail: it determines the product&#8217;s efficacy, skin tolerance, sustainability profile and regulatory viability in the European market. The earlier this knowledge is integrated into the development process, the fewer revisions are needed and the more coherent the final formula.<\/p>\n<p>At <strong>Cosmos Aromatica<\/strong>, we have a technical team ready to work on new formulas tailored to your needs and to become your trusted supplier. <a href=\"\/en\/\"><strong>Get in touch with us<\/strong><\/a>: we will assess your requirements and guide you through the next steps.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>The global market for surfactants reached \u00a340.22 million in 2025 and is forecast to reach \u00a360.84 million by 2033, with a compound annual growth rate of 5.4%, according to Grand View Research. These figures are no coincidence: surface-active agents are present in virtually every cleaning and hygiene product we use daily, from shampoo to facial [\u2026]<\/p>\n","protected":false},"author":2,"featured_media":171,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"rank_math_title":"Surfactants: types, uses and how to formulate | Cosmos","rank_math_description":"Discover what surfactants are, their four types and how to choose the right surfactant for each cosmetic formulation. 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