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Cosmetic Ingredient

Chemicals as Skincare Ingredients

Film Forming

Explore the top-grade material for film forming agents, film forming gel and film forming humectants at ECHEMI. Browse through product descriptions including CAS NO., properties, and SDS, to get the right solutions for your needs. Purchase film forming agents and raw chemical materials from certified suppliers with detailed information on the products.

PE

(9002-88-4)
Polyethylene (PE) is a thermoplastic polymer consisting of long hydrocarbon chains. PE is used in a number of applications including flexible film packaging produced by the blown film process. Polyethylene is used to regulate viscosity, suspension properties, and general stability in cosmetic formulations. Injection and blow molded toys, housewares and lids. Injection molded car seats, mower parts and pails. Hot melt coating for paper, additive in cast moldings, candles, oil-based inks and hot

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Poly(vinyl chloride)

(9002-86-2)
Poly(vinyl chloride), softened with a plasticizer such as esters, is used for making vinyl leather (used for handbags, briefcases, and inexpensive shoes), plastic raincoats, shower curtains, garden hoses, floor covering, and automobile upholstery.
PVC's relatively low cost, biological and chemical resistance and workability have resulted in it being used for a wide variety of applications. It is used for sewerage pipes and other pipe applications where cost or vulnerability to corrosion li

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Polyacrylamide

(9003-05-8)
Polyacrylamide (IUPAC poly(2-propenamide) or poly(1-carbamoylethylene), abbreviated as PAM) is a polymer (-CH2CHCONH2-) formed from acrylamide subunits. It can be synthesized as a simple linear-chain structure or cross-linked, typically using N,N'-methylenebisacrylamide. In the cross-linked form, the possibility of the monomer being present is reduced even further. It is highly water-absorbent, forming a soft gel when hydrated, used in such applications as polyacrylamide gel electrophoresis and

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Polystyrene

(9003-53-6)
Polystyrene is used to produce disposable plastic cutlery, CD cases, smoke detector housings, license plate frames, plastic model assembly kits, and many other items that require a rigid, economical plastic. Production methods include thermoforming and injection molding. Polystyrene petri dishes and other laboratory containers play an important role in biomedical research and science. For these uses, the items are almost always made by injection molding and are usually sterilized after molding by irradiation or treatment with ethylene oxide. Post-molding surface modification usually uses an oxygen-rich plasma, often to introduce polar groups. Much modern biomedical research relies on the use of such products. Polystyrene foam contains 95–98% air and has good thermal insulation properties, so it is often used as a building insulation material, for example in insulated concrete forms and structural insulated board building systems. Gray polystyrene foam containing graphite has excellent thermal insulation properties. Expanded polystyrene is used to make food containers, building insulation moldings, and packaging materials, both as solid blocks to hold protected items and as loosely filled ""peanuts"" to cushion fragile items within a box. It is also widely used in automotive and road safety applications, such as motorcycle helmets and roadblocks on racing tracks. The vast majority of expanded polystyrene products are manufactured by injection molding. The mold tools are often made of steel (which can be hardened and plated) and aluminum alloys. The mold is controlled by a channel system consisting of gates and runners.

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Poly(vinyl alcohol)

(9002-89-5)
Used in chemical industry, textile, printing, paper making, leather making, agriculture, food, medicine, packaging, ceramics, electronics, makeup, construction and other industries. Mainly used as binder, textile auxiliary, paper auxiliary, cement additive, emulsifier, dispersant, etc. Adding water-soluble PVA to putty powder can improve the adhesion and prevent cracking and powder loss. It can be used as an emulsion stabilizer for emulsion polymerization of polyvinyl acetate. Used to make water

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Potassium acetate

(127-08-2)
Potassium acetate is used in the manufacture of glass; as a softening agent for papers and textiles; as a dehydrating agent; and as a buffer. In medicine it is used as an expectorant and diuretic.

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Poly(vinylpyrrolidone)

(9003-39-8)
Clarifying agent in wines, beer, fruit juice and as a dispersing and suspending agent in pharmaceutic aid.Clarifying agent; stabilizer; thickening agent; tablet filling agent; dispersing agent. Polymer PVP with a molecular weight of 360,000 is often used as a clarifying agent for beer, vinegar, wine, etc. Used as a gas chromatography stationary liquid; widely used as a thickener, emulsifier, lubricant and clarifying agent, and also as a complex of disinfectant and sterilant PVP-I; as a colloidal

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Poly(acrylic acid)

(9003-01-4)
Poly(acrylic acid) (PAA or Carbomer) is generic name for synthetic high molecular weight polymers of acrylic acid. They may be homopolymers of acrylic acid, crosslinked with an allyl ether pentaerythritol, allyl ether of sucrose or allyl ether of propylene. In a water solution at neutral pH, PAA is an anionic polymer, i.e. many of the side chains of PAA will lose their protons and acquire a negative charge. This makes PAAs polyelectrolytes, with the ability to absorb and retain water and swell t

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Poly(ethylene terephthalate)

(25038-59-9)
Used in electrical parts including relay bases and lamp sockets, pump housings, gears, sprockets, chair arms, casters and furniture components. The first stage to produce Polyethylene Terephthalate (PET) is the reaction of ethylene glycol with terephthalic acid or dimethyl terephthalate. After the initial reaction, two or three polymerization steps are then performed, depending on the required molecular weight. The chemical structure of PET is composed of repeated units. Each unit has a physical

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Polyisobutylene

(9003-27-4)
It is mainly used in many fields such as petroleum additives and adhesives. Used to manufacture pressure sensitive adhesives and sealants. It can also be used as a thickener and other materials to improve adhesion, flexibility, aging resistance, air tightness and electrical insulation. It is also used to manufacture wires and cables, plasticizers, etc. Chewing gum base.

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Film forming agents are applied to the surface to establish films that protect them from wear and tear. In cosmetics and pharmaceuticals, film forming gel is used to create an elastic protective top that improves the product stability and sticking propensity to skin. Film forming humectants are used in cosmetics and skincare products to maintain moisture and boost skin care. “Film forming agent” on ECHEMI mainly supplies raw materials that are used to create protective coatings in different formulations.

More Information

A film forming agent is an additive that creates a thin, long-wearing layer on a substrate to provide protection, smoothness, and improved function. The most common of these agents are used in coatings, adhesives, cosmetics, and pharmaceutical products. Cosmetic and pharmaceutical formulations often contain film forming gels that impart a flexible, durable layer to create better product deposition and stabilize the product upon the skin. Also, formulations used in personal care products may contain film forming humectants to help maintain skin moisturization and integrity. These ingredients assist in the development of long-lasting, quality products which are in line with various industrial standards.

Common ingredients used as film forming agents include:

Polyvinyl alcohol (PVA)

Hydroxyethylcellulose (HEC)

Acrylates copolymer

Sodium Alginate

Carboxymethylcellulose (CMC)

Frequently Asked Questions

What is film forming and how does it work?

Film forming refers to the process by which a liquid coating or solution dries or cures to create a continuous, protective layer on a surface. This layer—known as a film—can provide barrier properties, enhance appearance, or deliver functional benefits such as water resistance, UV protection, or controlled release. Film-forming agents are commonly used in industries like pharmaceuticals, cosmetics, paints, and agrochemicals.

What are common applications of film-forming agents?

Film-forming agents are widely used across multiple sectors:1. In pharmaceuticals, they enable enteric coatings for tablets that dissolve only in the intestine.2. In cosmetics, they help create long-wear makeup and skincare films that lock in moisture.3. In agriculture, they form protective barriers on seeds or crops to control pesticide release.4. In industrial coatings, they improve adhesion, gloss, and durability of paints and varnishes.These versatile applications highlight their importance in product performance and stability.

What types of materials are used as film-forming agents?

Film-forming agents can be natural, synthetic, or semi-synthetic polymers. Common examples include:- Cellulose derivatives like hydroxypropyl methylcellulose (HPMC) and ethyl cellulose- Acrylic polymers such as Eudragit®- Polyvinyl alcohol (PVA)- Shellac and zein (natural resins)The choice depends on required properties like solubility, flexibility, permeability, and compatibility with other formulation components.

How do I choose the right film-forming agent for my formulation?

Selecting the right film-forming agent involves evaluating several key factors:1. Desired release profile (immediate, delayed, or sustained)2. Solubility in aqueous or organic solvents3. Mechanical strength and flexibility of the resulting film4. Regulatory compliance for your target market (e.g., FDA, EU)5. Compatibility with active ingredients and excipientsConsulting technical data sheets and conducting pilot trials can help ensure optimal performance and regulatory adherence.

Are film-forming coatings safe for use in pharmaceuticals and cosmetics?

Yes, film-forming coatings used in pharmaceuticals and cosmetics are generally recognized as safe (GRAS) or approved by regulatory agencies such as the U.S. FDA, EMA, or ISO-certified bodies—provided they meet purity and quality standards. Reputable suppliers provide documentation including certificates of analysis (CoA), safety data sheets (SDS), and regulatory compliance statements to support safe usage in consumer products.

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