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Antioxidants

Find our advanced raw materials to optimize your formulations. Our certified suppliers can provide high-quality materials, so you can have the top antioxidants and experience the best antioxidant benefits. Explore detailed product information, including CAS NO., properties, and technical data, to ensure optimal performance and efficacy in creating products.

Azodicarbonamide

(123-77-3)
Azodicarboxamide is used as an additive to wheat flour breads and dough to improve the physical properties of the dough and the baking performance. It is also used to optimize the levels of oxidant/re ducing agents in the baking of wheat flour. As blowing and foaming agent for plastics; as maturing and bleaching agent in cereal flour. Azodicarbonamide is a dough conditioner that exists as a yellow to orange-red crystalline powder practically insoluble in water. it is used in aging and blea

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Tris(2-methyl-4-hydroxy-5-tert-butylphenyl)butane

(1843-03-4)
Excellent phenolic antioxidant. It can be used as stabilizer in polypropylene, polyethylene, polyvinyl chloride, ABS, polyoxymethylene and other resins and light-colored rubber products. With the antioxidant DLTP, it can produce a synergistic effect.

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Dichlorobis(triphenylphosphine)palladium

(13965-03-2)
Dichlorobis(triphenylphosphine) Palladium (II) is used primarily in organometallic catalytic reactions due to the palladium content of the compound. It is also involved in crystalized structures of metallacyclic complexes which show antiinflammatory and antifungal properties.

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Tris(dibenzylideneacetone)dipalladium

(51364-51-3)
Aryl chloride Suzuki coupling reaction catalyst; aryl chloride Heck coupling reaction catalyst; keto arylation reaction catalyst; aryl halide Buchwald-Hartwig amination reaction catalyst; allyl chloride fluorination reaction catalyst; carboxyl Ester β-arylation catalyst; 1,1-dichloro-1-olefin carbonylation catalyst; aryl and vinyl triflate to aryl and vinyl halide catalyst

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Antioxidant3114

(27676-62-6)
Tris(3,5-di-tert-butyl-4-hydroxybenzyl) Isocyanurate is used an as antioxidant-stabilizer in polyolefin films intended for packaging nonfatty food as well as an antioxidant in propylene copolymers.

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(-)-1,1′-Binaphthyl-2,2′-diyl hydrogen phosphate

(39648-67-4)
Chiral ligand for hydrogen carboxylation reaction; for asymmetric Mannich reaction catalyzed by chiral Bronsted acid; for asymmetric dipole cycloaddition reaction with rhodium complexation and adjustment of diazo compounds; for Racemic amines that are difficult to separate; palladium derivatives have been used in asymmetric hydrogen carboxylation, and rhodium derivatives have been used in dipolar cycloaddition

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Methyl-2-mercaptobenzimidazole

(53988-10-6)
Used as an antioxidant for natural rubber, styrene butadiene rubber, butadiene rubber, nitrile rubber and its latex

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1,3,5-Trimethyl-2,4,6-tris(3,5-di-tert-butyl-4-hydroxybenzyl)benzene

(1709-70-2)
This product is a high molecular weight multi-component hindered phenolic antioxidant with good heat resistance, no pollution, no coloring, low volatility, etc. It is an excellent antioxidant for high-density polyethylene, polypropylene and rubber. It is also used in The amount of plastic products such as polyvinyl chloride, polyamide, ABS resin and polyester is generally 0.1 to 0.5 parts.

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Benzenepropanoic acid, 3,5-bis(1,1-dimethylethyl)-4-hydroxy-, C7-9-branched alkyl esters

(125643-61-0)
Lubricating oil additive; metal deactivator; extreme pressure agent, bacteria and oxidation inhibitor, used as antioxidant in internal combustion engine oil

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Antioxidants are substances that prevent the adverse effects of oxygen. It is a type of substance that can help capture and neutralize free radicals, thereby eliminating free radical damage to the human body. Antioxidants as food additives can help fight food spoilage. Antioxidants are usually added to industrial products. A common use is as a stabilizer for fuels and lubricants to prevent oxidation. It can also be added to gasoline to prevent polymerization and prevent the formation of engine fouling. "Antioxidants" on ECHEMI mainly supplies raw materials for Antioxidants.

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Antioxidant Benefits in Industrial Applications
Antioxidants are mainly used in industrial products. They can prevent oxidation. Oxidation is a kind of chemical reaction that can degrade materials and compromise their performance. Degradation and reduced efficacy will be led to by avoiding oxidation. Antioxidants act as stabilizers in the fuel and lubricant industries. They enhance products’ longevity and performance.

Antioxidant Powder and Oils
Antioxidant powder and oils are commonly used forms of stabilizers in industrial settings. They offer versatile solutions for different industrial needs. The antioxidant powder can be easily added to solid or powdered products, it provides a convenient method to enhance stability. Meanwhile, antioxidant oil can be used in different formulations to prevent liquid and semi-liquid product’ oxidation.

Pros of Antioxidants
The inclusion of antioxidants in industrial products has many advantages. For example, they can extend shelf life, improve performance and they are cost-effective.

Frequently Asked Questions

What are antioxidants and how do they work?

Antioxidants are compounds that inhibit oxidation—a chemical reaction that can produce free radicals and lead to cellular damage. They neutralize free radicals by donating electrons, thereby protecting cells from oxidative stress. Common antioxidants include vitamins C and E, beta-carotene, selenium, and polyphenols found in plants. Their role is critical in maintaining health and preventing chronic diseases such as heart disease and cancer.

What are the most common natural sources of antioxidants?

Natural sources of antioxidants are abundant in plant-based foods. Key examples include berries (like blueberries and strawberries), dark chocolate, nuts (especially walnuts and almonds), green tea, spinach, kale, and beans. Fruits such as oranges, grapes, and pomegranates also contain high levels of antioxidant compounds like flavonoids and vitamin C. Incorporating a variety of these foods into your diet supports overall antioxidant intake and promotes long-term health.

How are antioxidants used in the food and beverage industry?

In the food and beverage industry, antioxidants serve as preservatives to extend shelf life by preventing lipid oxidation and rancidity in fats and oils. Natural antioxidants like rosemary extract, tocopherols (vitamin E), and ascorbic acid (vitamin C) are commonly added to products such as snacks, baked goods, meat products, and beverages. Their use not only maintains product quality and flavor but also meets consumer demand for clean-label, naturally preserved foods.

What should I consider when choosing an antioxidant supplier for industrial use?

When selecting an antioxidant supplier for industrial applications—such as in food, cosmetics, or pharmaceuticals—consider the following factors:1. Regulatory compliance: Ensure the supplier provides antioxidants approved by relevant authorities (e.g., FDA, EFSA).2. Purity and consistency: High-quality raw materials with verified specifications and batch-to-batch reliability.3. Certification: Look for GMP, ISO, or organic certifications depending on your application.4. Technical support: A reliable supplier should offer documentation, stability data, and formulation guidance.5. Sustainability: Many buyers now prioritize eco-friendly sourcing and production practices.

Are synthetic antioxidants safe compared to natural ones?

Both synthetic (e.g., BHA, BHT, TBHQ) and natural antioxidants (e.g., vitamin E, rosemary extract) are generally recognized as safe (GRAS) when used within regulatory limits. Synthetic antioxidants are highly effective and cost-efficient, especially in processed foods. However, consumer preference is shifting toward natural alternatives due to perceived health benefits and cleaner labeling. Safety depends on dosage and application—regulatory bodies set strict maximum usage levels for all approved antioxidants to ensure consumer safety.

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