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Home > Catalyst and Auxiliary > Fluorescent Brightener (Find 62 items)

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Fluorescent Brightener

(2-Chlorophenyl)acetonitrile

(2856-63-5)
Used in the production of granisetron hydrochloride; this product is an important raw material for the new fluorescent whitening agent PS-1 series; an intermediate for the synthesis of ER-330 fluorescent whitening agent, and can also be used in pesticides, medicine, etc.; Intermediate

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2-[4-[2-[4-(2-Benzoxazolyl)phenyl]ethenyl]phenyl]-5-methylbenzoxazole

(5242-49-9)
Fluorescent whitening agent KSN and OB-1 have similar chemical structure, but the whitening effect of polyester fiber and plastic products is better than OB-1, and the compatibility with plastic is better than OB-1, and the amount is very small It can produce very good whitening effect in Chemicalbook, which is far from OB-1. KSN not only has excellent high temperature resistance, but also has excellent resistance to sunlight and weather. Fluorescent whitening agent KSN is used in all plastics,

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Acenaphthylene

(208-96-8)
Acenaphthylene is a raw material for organic synthesis, used in electrical insulating materials, ion exchange resins, dyes, etc. When the purity of commercially available products is 95%, the melting point is 88-91°C, and the relative density at the melting point is 0.899. The raw material for the production of 1,8-naphthalenedicarboxylic acid anhydride, used in the production of dyes, can be used to produce acenaphthylene resin after dehydrogenation, can produce plant growth hormones, insectici

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2,5-Thiophenedicarboxylic acid

(4282-31-9)
Mainly used in the whitening of synthetic fibers, EVA, PVC, plastics and rubber, can be used in the whitening of plastic films, compression molding materials, injection molding materials, etc.

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Fluorescent Brightener 135

(1041-00-5)
This product is used as a brightener for synthetic fibers, and is suitable for the whitening of polyester, nylon, acetate fiber or synthetic fiber blended with cotton and wool. The fabrics using it has effective light fastness and wet fastness. Used as a brightener for polyester, polyamide, acetate fiber and blended fabrics, etc.

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C.I. Fluorescent Brightener 260

(16090-02-1)
Fluorescent (optical) brighteners are known for their characteristics of protecting baculoviruses against deactivation by UV light and enhancing the activity of these agents as microbial insecticides on hosts and semipermissive hosts. Fluorescent brighteners improve the bioinsecticidal activity of Anticarsia gemmatalis nucleopolyhedrovirus.

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2-Cyanobenzyl chloride

(612-13-5)
Organic synthesis intermediates. Used in the synthesis of stilbene fluorescent whitening agents, such as fluorescent whitening agent ER series, etc. s, etc.

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2-[2-[4-[2-(4-Cyanophenyl)ethenyl]phenyl]ethenyl]benzonitrile

(13001-38-2)
It is used for whitening and brightening of polyester, polyester cotton, polyester yarn, polyester yarn, polyester wool, polyester and linen blended textiles, and also for whitening and brightening of artificial leather, coatings and other industries

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4,4′-Bis(5-methyl-2-benzoxazolyl)stilbene

(2397-00-4)
Suitable for whitening of polyester, polyamide, polyacrylonitrile fiber, also suitable for whitening of engineering plastics PP, ABS, EVA, PS, PC

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Fluorescent brightener is a fluorescent dye, or white dye, is also a complex organic compound. Its characteristic is that it can excite the incident light to produce fluorescence, so that the dyed substance obtains a shining effect similar to fluorite, making the substance seen by the naked eye very white. According to the chemical structure, it can be divided into five categories: stilbene type, coumarin type, pyrazoline type, benzoxazide type and phthalimide type. "Fluorescent Brightener" on ECHEMI mainly supplies raw materials for fluorescent brighteners.

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Frequently Asked Questions

What is a Fluorescent Brightener and how does it work?

A Fluorescent Brightener, also known as an optical brightening agent (OBA) or fluorescent whitening agent (FWA), is a chemical compound that absorbs ultraviolet light and re-emits it as visible blue light. This process counteracts yellowing in materials like textiles, paper, and plastics, making them appear brighter and whiter to the human eye. These additives are widely used in detergents, cosmetics, and industrial applications to enhance visual appeal without altering the material’s physical properties.

What are the common types of Fluorescent Brighteners used in industry?

The most commonly used Fluorescent Brighteners include stilbene derivatives (e.g., DSB and DAS1), coumarin-based compounds, and benzoxazole types. Each type offers specific performance characteristics depending on the application—such as solubility in water or organic solvents, thermal stability, and compatibility with substrates like cotton, polyester, or paper pulp. Selecting the right type depends on factors like pH tolerance, processing temperature, and end-use requirements.

How do I choose the right Fluorescent Brightener for my product?

Choosing the right Fluorescent Brightener involves evaluating several key factors:1. Substrate compatibility—ensure the brightener works effectively with your base material (e.g., fabric, plastic, or paper).2. Processing conditions—consider temperature, pH, and exposure to UV light during manufacturing.3. Regulatory compliance—verify that the compound meets safety and environmental standards for your target market (e.g., REACH, FDA, or OEKO-TEX).4. Performance metrics—assess brightness gain, wash fastness, and photostability.Consulting technical data sheets and requesting samples from reputable suppliers can help validate suitability before large-scale use.

Are Fluorescent Brighteners safe for use in consumer products?

When used within regulatory limits, Fluorescent Brighteners are generally considered safe for consumer products such as laundry detergents, cosmetics, and food packaging materials. However, certain types may cause skin sensitization in sensitive individuals or degrade into potentially harmful byproducts under prolonged UV exposure. It’s essential to select brighteners certified by recognized standards (e.g., EPA, EU Ecolabel, or ISO 14001) and follow recommended usage concentrations to ensure safety and compliance.

What are the main applications of Fluorescent Brighteners across industries?

Fluorescent Brighteners are used across multiple industries:1. Textiles—enhancing whiteness and brightness in fabrics and garments.2. Paper manufacturing—improving the visual quality of printing paper and packaging.3. Plastics—adding luminance to white or light-colored polymers.4. Detergents—boosting the perceived cleanliness of washed clothes.5. Cosmetics—used in some toothpastes and shampoos for a 'brightening' effect.Their versatility stems from their ability to optically enhance appearance without chemical bleaching, making them cost-effective and widely adopted.

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