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Kaolin Nanoclay (Al2Si2O5 (OH)

Kaolin Nanoclay (Al2Si2O5 (OH)

700 INR/Bottle

Product Details:

  • Molecular Formula Al2Si2O5(OH)4
  • Solubility Insoluble in water, slightly soluble in strong acids and alkalis
  • Storage Store in well-ventilated, dry area, sealed container
  • Shape Platelet/nano-flake
  • Refractive Rate 1.561.60
  • Poisonous Yes
  • HS Code 2507
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Kaolin Nanoclay (Al2Si2O5 (OH) Price And Quantity

  • 700 INR/Bottle
  • 1 Gram
  • 22.5
  • 1315%
  • Compatible with polymers, resins, and elastomers
  • 1020 m/g
  • 2.62.63
  • 410
  • <0.5% (at 105 C)
  • White to light cream
  • <100 nm (nano scale)
  • Stable between pH 49
  • Easily dispersible in aqueous and select organic media
  • 0.40.6 g/cm
  • High thermal resistance
  • High aspect ratio, high surface activity
  • 5 years (when stored properly)

Kaolin Nanoclay (Al2Si2O5 (OH) Product Specifications

  • Silicate mineral, nanomaterial
  • Al2Si2O5(OH)4
  • 310-194-1
  • Industrial grade, nano grade
  • China clay, hydrated aluminium silicate, kaolinite
  • 2.6 Gram per cubic centimeter(g/cm3)
  • Kaolin (Al2Si2O5(OH)4)
  • Odorless
  • ISO 9001:2015 compliant
  • Industrial, laboratory, coatings, nanotechnology, cosmetics
  • 1332-58-7
  • Not applicable (decomposes)
  • 58 (aqueous suspension)
  • Reinforcement in nanocomposites, ceramics, coatings, plastics, rubber, paints, adhesives, pharmaceuticals, cosmetics
  • Powder
  • 2507
  • > 1700 C
  • 258.16 g/mol
  • 98+% (typical)
  • Odorless and tasteless
  • Al2Si2O5(OH)4
  • Kaolin Nanoclay
  • Platelet/nano-flake
  • Nanoclay (powder form)
  • Store in well-ventilated, dry area, sealed container
  • Insoluble in water, slightly soluble in strong acids and alkalis
  • Yes
  • 1.561.60
  • 22.5
  • 1315%
  • Compatible with polymers, resins, and elastomers
  • 1020 m/g
  • 2.62.63
  • 410
  • <0.5% (at 105 C)
  • White to light cream
  • <100 nm (nano scale)
  • Stable between pH 49
  • Easily dispersible in aqueous and select organic media
  • 0.40.6 g/cm
  • High thermal resistance
  • High aspect ratio, high surface activity
  • 5 years (when stored properly)

Product Description

Product Name: Kaolin Nanoclay (Al2Si2O5 (OH) 4,>99.9% < 80nm)

Product

Kaolin Nanoclay

Cat No

NCZ-MN-127/20

CAS No

1332-58-7

Purity

> 99.9%

APS

< 80 nm

Molecular Formula

Al2Si2O5(OH)4

Molecular Weight

258.2 g/mol

Form

Powder

Color

White

Specific Gravity

~2.6

Melting Point

> 1500AoC

pH

4.0 - 6.0

Solubility

Insoluble in water

Kaolin Nanoclay Related Information

Storage Conditions:

Airtightsealed, avoid light and keep dry at room temperature.

Pleasecontact us for customization and price inquiry

Email:contact@nanochemazone.com

Note:We supply different size ranges of Nano and micron as per the clientasrequirements and also accept customization in various parameters.



Enhanced Performance in Nanocomposites

Kaolin Nanoclay's nano-flake platelet structure and high aspect ratio significantly improve mechanical reinforcement, thermal resistance, and barrier properties in a wide variety of industrial composites. Its compatibility with polymers and resins allows for versatile integration in plastics, rubber, coatings, adhesives, and high-performance ceramics.


Easy Dispersion and Processing

The nano-sized particles of Kaolin Nanoclay disperse easily in aqueous or select organic media, allowing for uniform distribution in formulations. This ease of dispersion leads to consistent performance and improved processibility, making it a favorable additive for manufacturers and formulators.


Safe, Stable, and Sustainable

Odorless, tasteless, and non-toxic, Kaolin Nanoclay maintains its physical and chemical properties for up to five years when stored in a dry, well-ventilated area in sealed containers. Its high purity, stable pH, and ISO certification ensure safe and reliable use in demanding industrial environments.

FAQ's of Kaolin Nanoclay (Al2Si2O5 (OH):


Q: What are the primary applications of Kaolin Nanoclay (Al2Si2O5(OH)4)?

A: Kaolin Nanoclay finds extensive use as a reinforcement agent in nanocomposites, ceramics, coatings, plastics, rubber, paints, adhesives, pharmaceuticals, and cosmetics due to its superior mechanical and thermal properties.

Q: How can Kaolin Nanoclay be incorporated into formulations?

A: Thanks to its nano-scale particle size and high surface activity, Kaolin Nanoclay can be easily dispersed in water and select organic media. It is often added gradually under stirring or sonication to ensure uniform distribution in composites, resins, or polymer matrices.

Q: What are the storage recommendations to maintain the quality of Kaolin Nanoclay?

A: Kaolin Nanoclay should be stored in a sealed container in a dry, well-ventilated area to prevent moisture uptake. Proper storage ensures its 5-year shelf life and maintains its low moisture content and optimal properties.

Q: What benefits does Kaolin Nanoclay offer compared to traditional fillers?

A: With its nano-scale platelet structure and high specific surface area, Kaolin Nanoclay provides superior reinforcement, enhanced thermal resistance, improved barrier properties, and better compatibility with advanced materials when compared to conventional fillers.

Q: Is Kaolin Nanoclay safe and environmentally friendly for industrial and laboratory use?

A: Yes, Kaolin Nanoclay is non-toxic, odorless, tasteless, and compliant with ISO 9001:2015 standards, making it safe for use across industries including pharmaceuticals and cosmetics, as well as environmentally responsible.

Q: Where is Kaolin Nanoclay typically used within the manufacturing process?

A: It is commonly incorporated during the compounding stage of plastics, resins, rubbers, or coatings production. Its easy dispersibility and compatibility mean it blends well, enhancing the end product's structural, dielectric, and barrier qualities.

Q: What is the process for ensuring optimal dispersion of Kaolin Nanoclay in composite materials?

A: Optimal dispersion is generally achieved by slowly adding the nanoclay to the chosen liquid medium under mechanical stirring or using ultrasonication. This process breaks up agglomerates and ensures even distribution throughout the host material.

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