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Home > Cosmetic Ingredient > Light Stabilizer (Find 77 items)

Cosmetic Ingredient

Chemicals as Skincare Ingredients

Light Stabilizer

Safeguard your cosmetic products from light degradation with our effective light stabilizers. Check all the chemical products you need for light stabilization with CAS NO., property information, and SDS. Shop light stabilizer raw chemical materials from certified suppliers with detailed product information.

Zinc oxide (ZnO)

(1314-13-2)
Mainly used in rubber or cable industry as a reinforcing agent and activator, as a colorant and filler for white glue, and as a vulcanizing agent in neoprene; used as a fine desulfurization of raw gas in the fertilizer industry; Used as white pigment, rubber vulcanization activator, reinforcing agent, organic synthesis catalyst, desulfurizer, used for electrostatic photocopying, pharmaceuticals, etc.; used for desulfurization of synthetic ammonia, petroleum and natural gas chemical raw materials

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Benzophenone

(119-61-9)
1. Reported to bind monsaccharides in the presence of polysaccharides
2. It is used in the manufacturing of antihistamines, hypnotics, insecticides.

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4-Aminobenzoic acid

(150-13-0)
Used as pharmaceuticals, dye intermediates, dyes and pharmaceutical intermediates. It is used to produce reactive red M-80, M-10B, reactive red purple X-2R and other dyes, and to produce cyanobenzoic acid to produce p-carboxybenzylamine. P-Aminobenzoic acid can be used as a sunscreen. Its derivative, octyl p-dimethylcarbamate, is an excellent sunscreen. Its trade name is PadimateO. Used as a reagent for determining copper. Used in the synthesis of esters, folic acid and azo dyes. Used as analyt

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Hydroxyethyl cellulose

(9004-62-0)
Hydroxyethyl cellulose is generally used as a thickener, protective agent, binder, stabilizer and additives for the preparation of emulsions, gels, ointments, lotions, eye clears, suppositories and tablets, and also used as hydrophilic gelling agents. Glue, matrix materials, preparation of matrix-type sustained-release preparations, and can also be used as stabilizers in food.

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Cholesterol

(57-88-5)
1. Analeptic, antibacterial
2. Cholesterol is a major component of all biological membranes; ~25% of total brain lipid is Cholesterol. Cholesterol is the principal sterol of the higher animals. Cholesterol was found in all body tissues, especial in the brain, spinal cord, and in animal fats or oils. Cholesterol is the main constituent of gallstones.
3. Cholesterol be used as pharmaceutical intermediates and be used as synthetic materials of liquid crystal polymers.

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2,4-Dihydroxybenzophenone

(131-56-6)
2,4-Dihydroxybenzophenone is an metabolite of Benzophenone (B204980), an compound used in the manufacturing of antihistamines, hypnotics and insecticides. Ultraviolet light absorber, especially in paints and plastics.

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Microcrystalline cellulose

(9004-34-6)
1. High purity cellulose powders for partition chromatography.
2. ACCEL-101 is most widely used for direct compression tableting and wet granulation.ACCEL-102 has similar compression properties to ACCEL-101. However, it has larger particle size and therefore, may be of value in improving the flow if fine powders.ACCEL

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Benzophenone 4

(4065-45-6)
As an anti-ultraviolet finishing agent, it has good anti-aging and softening effects on cotton fabrics and polyester fibers. It is widely used in sunscreen creams, creams, honey, lotions, oils and other cosmetics; it is a broad-spectrum ultraviolet absorber with high absorption efficiency, non-toxic, no teratogenic side effects, and good light and heat stability. It can absorb UV-A and UV-B at the same time. It is a class I sunscreen approved by the U.S. FDA. It is used more frequently in the U.

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beta-Sitosterol

(83-46-5)
1. A common sterol in plants. Isolated from wheat germ oil, corn oil. Antilipemic. Used in the treatment of prostatic adenoma.
2. Antiinflammatory, immunomodulator

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Avobenzone

(70356-09-1)
O/W type mild anionic emulsifier/stabilizer, easy to operate and shape. Suitable for PH3~9 range system and exposure system

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A light stabilizer refers to a substance added to cosmetic products to protect them from the deteriorating effects of light exposure. According to chemical composition, light stabilizers can be categorized into organic and inorganic types. According to the application method, light stabilizers can be further classified into surface-applied or incorporated directly into the formulation. Examples of light stabilizers commonly used in cosmetics include octocrylene, avobenzone, and butyl methoxydibenzoylmethane. "Light stabilizers" on ECHEMl mainly supply raw materials for light stabilizing.

More Information

Light stabilizers are additives used to protect materials such as plastics, coatings, and textiles from the harmful effects of UV radiation. Exposure to sunlight can lead to degradation and discoloration of these materials, compromising their appearance and mechanical properties.

Light stabilizers serve as a shield against UV radiation, preventing premature aging and degradation of the material. They work by absorbing UV light and dissipating it as harmless heat or by inhibiting the photochemical reactions that cause degradation. Incorporating light stabilizers into formulations ensures the longevity and aesthetic appeal of the final product, maintaining its color, strength, and overall performance even under prolonged exposure to sunlight.

Common types of light stabilizers include:

•UV absorbers

•Hindered amine light stabilizers (HALS)

•Quenchers

Frequently Asked Questions

What is a light stabilizer and how does it work?

A light stabilizer is an additive used to protect materials—especially polymers, coatings, and plastics—from degradation caused by ultraviolet (UV) radiation and visible light. It works by absorbing or screening harmful UV rays, quenching excited molecules, or scavenging free radicals generated during photo-oxidation. Common types include UV absorbers (e.g., benzophenones, benzotriazoles) and hindered amine light stabilizers (HALS), each offering different mechanisms of protection depending on the application.

What are the common applications of light stabilizers?

Light stabilizers are widely used in industries where long-term exposure to sunlight can cause material deterioration. Key applications include automotive parts (dashboards, bumpers), agricultural films, outdoor furniture, construction materials (pipes, siding), paints and coatings, and packaging films. By preventing discoloration, cracking, and loss of mechanical strength, light stabilizers significantly extend product lifespan and maintain aesthetic and functional performance.

How do I choose the right light stabilizer for my product?

Selecting the right light stabilizer depends on several factors:1. **Base polymer type** – Different resins (e.g., PP, PE, PVC, ABS) respond better to specific stabilizers.2. **Processing conditions** – Thermal stability during extrusion or molding is crucial.3. **End-use environment** – Outdoor vs. indoor, UV intensity, and exposure duration.4. **Regulatory compliance** – Especially important for food contact or medical applications.5. **Compatibility and solubility** – To avoid blooming or migration.Consulting technical data sheets and working with experienced suppliers ensures optimal performance and cost-efficiency.

What is the difference between HALS and UV absorbers?

Hindered Amine Light Stabilizers (HALS) and UV absorbers both protect against photodegradation but function differently. UV absorbers (like benzotriazoles) act like a sunscreen—they absorb UV radiation and convert it into harmless heat. HALS, on the other hand, do not absorb UV light; instead, they neutralize free radicals formed during UV exposure through a regenerative cyclic mechanism, offering long-term stabilization even at low concentrations. HALS are particularly effective in polyolefins, while UV absorbers are often preferred in clear coatings and engineering plastics.

Are light stabilizers safe and environmentally friendly?

Most commercial light stabilizers undergo rigorous safety and environmental assessments before market approval. Many modern formulations comply with global regulations such as REACH, RoHS, and FDA standards for indirect food contact. However, certain older chemistries may face restrictions due to potential ecotoxicity or persistence. Leading manufacturers now offer bio-based or non-migrating alternatives to enhance sustainability. Always verify regulatory status and request safety data sheets (SDS) from your supplier to ensure compliance with local and international guidelines.

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