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Home > Cosmetic Ingredient > Antistatic (Find 47 items)

Cosmetic Ingredient

Antistatic

Find out how our premium antistatic agents can help you. Please find the comprehensive data on product information, CAS NO., properties, and SDS for the best quality products. Purchase antistatic agents and raw chemical materials from only certified suppliers with detailed product descriptions.

Poly(vinyl acetate)

(9003-20-7)
Poly(vinyl acetate) (PVA, PVAc, poly(ethenyl ethanoate): commonly referred to as wood glue, white glue, carpenter's glue, school glue, Elmer's glue in the US, or PVA glue) is an aliphatic rubbery synthetic polymer with the formula (C4H6O2)n. It belongs to the polyvinyl esters family with the general formula -[RCOOCHCH2]-. It is a type of thermoplastic.

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Polyquaternium 10

(81859-24-7)
Polyquaternium-10 (PQ-10) and Polyquaternium-7 (PQ-7) are two of the most frequently used polymers in commercial shampoos. Both of these polymers form negatively charged complexes with excess anionic surfactant, resulting in reduced deposition because of repulsion by the negatively charged hair surface. The magnitude of this effect depends on the particular anionic used, and on the anionic surfactant/polymer ratio. In all cases, however, conditioning from shampoos is significantly less than from

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POLYQUATERNIUM-10

(53568-66-4)

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Peptones

(73049-73-7)
Used as a biochemical reagent

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Polyquaternium 11

(53633-54-8)
PQ-11 can form a clear, uniform liquid film on the surface of the object, and the film is basically not sticky. PQ-11 has cationic properties. PQ-11 can also be used in combination with anionic and amphoteric surfactants.

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Poly(methylhydrosiloxane)

(9004-73-3)
methicone is a type of silicone used primarily in the formulation of free-flowing cosmetic powders. Methicone can also be found in cosmetic preparations as a skin surface sealant to reduce transepidermal water loss.

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Pea Protein

(222400-29-5)

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Protein hydrolyzates, yeast

(100684-36-4)

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Antistatic agents decrease the possibility of electrostatic charge accumulation in materials by enhancing their conductivity. It reduces static charge build-up so that materials are safe and easier to handle by using antistatics. Antistatic additives are used to improve the performance of the product by reducing the associated static concerns. “Antistatic agents” offered on ECHEMI mainly supply raw materials used in industrial and electronic industries.

More Information

Static control is crucial in manufacturing and the performance of materials, and an antistatic agent is required for this purpose. Its function is to minimize the static charges that are a problem when handling sensitive materials by increasing the surface conductivity. Antistatic additives are efficient in several formulations giving the needed protection from static electricity in numerous uses. This provides a safer process, non-attraction of dust, and better product quality in industries where static is an issue.

Common applications of antistatic agents include:

Plastic manufacturing

Electronics assembly

Packaging materials

Automotive components

Medical equipment

Textile production

Frequently Asked Questions

What are antistatic agents and how do they work?

Antistatic agents are chemical additives used to reduce or eliminate static electricity buildup on surfaces, particularly in plastics, textiles, and electronic components. They work by increasing surface conductivity, allowing static charges to dissipate more quickly. These agents can be internal (mixed into the material during production) or external (applied as a topical treatment). Understanding how antistatic agents function helps in selecting the right type for specific industrial applications.

What are common applications of antistatic products?

Antistatic products are widely used across multiple industries:1. Electronics manufacturing – to protect sensitive components from electrostatic discharge (ESD).2. Packaging – especially for food, pharmaceuticals, and electronics where static can attract dust or damage contents.3. Textiles – to prevent cling and improve comfort in synthetic fabrics.4. Plastics processing – to avoid issues like dust adhesion or jamming during production.Selecting the appropriate antistatic solution depends on the material and end-use environment.

How do I choose the right antistatic additive for my application?

Choosing the right antistatic additive involves considering several factors:1. Compatibility with your base material (e.g., polyethylene, polyester, PVC).2. Required duration of antistatic effect – temporary vs. long-lasting.3. Regulatory compliance, especially for food contact or medical-grade materials.4. Processing conditions such as temperature and method (injection molding, extrusion, etc.).Consulting technical data sheets and working with certified suppliers ensures optimal performance and safety.

Are antistatic agents safe for use in food packaging?

Yes, certain antistatic agents are approved for use in food packaging by regulatory bodies such as the U.S. FDA and EFSA in Europe. These food-grade antistats are non-toxic, odorless, and comply with strict migration limits to ensure they do not contaminate food. Always verify that the product carries relevant certifications (e.g., FDA 21 CFR compliance) and is explicitly labeled for food-contact applications.

What’s the difference between antistatic, conductive, and ESD-safe materials?

While often confused, these terms describe different levels of electrical resistance:- Antistatic materials prevent static buildup but don’t necessarily dissipate existing charges quickly (surface resistivity: 10⁹–10¹² Ω/sq).- Conductive materials rapidly transfer charges (resistivity <10⁵ Ω/sq).- ESD-safe (electrostatic discharge-safe) materials fall in between (10⁵–10⁹ Ω/sq), offering controlled dissipation to protect electronics.Choosing the correct category depends on your application’s sensitivity to static electricity.

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