Ceramics And Pigments

Ceramics And Pigments

In the world of ceramics and pigments, innovation meets quality through essential metals. Cobalt is known for its brilliant blue hue, Nickel imparts stability and strength, and Copper adds a spectrum of colors with its versatility. Minor metals act as crucial catalysts for performance and sustainability. In the production of enamels, they provide exceptional durability and visual appeal.

Ceramics And Pigments / Metals and Chemicals

Co(OH)2

Cobalt Hydroxide

Chemical Formula:

Co(OH)2

CAS No.: 21041-93-0
Appearance: Pink-Red Crystals
About Cobalt Hydroxide:

Cobalt hydroxide is utilized in paints as a drier, aiding in the oxidation and polymerization of drying oils, thus accelerating the drying process and enhancing the durability of paint coatings. Other key applications include Catalysts, Batteries, Metallic soaps, Pigments.

LiCoO2

Lithium Cobalt Oxide

Chemical Formula:

LiCoO2

CAS No.: 12190-79-3
Appearance: dark gray to black powder or solid
About Lithium Cobalt Oxide:

The key application of Lithium Cobalt Oxide (LiCoO2) is as a cathode material in lithium-ion batteries, making it an essential component in numerous electronic devices and electric vehicles.

CoSO4·7H20

Cobalt Sulfate

Chemical Formula:

CoSO4·7H20

CAS No.: 10026-24-1
Appearance: Red crystaline compound
About Cobalt Sulfate:

Cobalt sulfate finds applications in diverse sectors, including agriculture as a micronutrient supplement for livestock and crops, in electroplating for producing durable and corrosion-resistant coatings, in the production of pigments and dyes for ceramics and glass, and in the manufacturing of rechargeable batteries as a precursor material for cathodes in lithium-ion batteries.

NiSO4•6H2O

Nickel Sulphate crystals

Chemical Formula:

NiSO4•6H2O

CAS No.: 10101-97-0
Appearance: Emerald green crystals
About Nickel Sulphate crystals:

Nickel Sulphate crystals are primarily used in nickel-plating processes, as well as to produce catalysts used in oil hydrogenation and in coating applications for ceramics.

NiO

Low grade Nickel Oxide

Chemical Formula:

NiO

CAS No.: 1313-99-1
Appearance: a dark gray or greenish-black powder.
About Low grade Nickel Oxide:

Low-grade Nickel Oxide has a diverse range of applications across various industries. The key applications of low-grade Nickel Oxide are in ceramics and pigments as a colorant, as a catalyst, in certain fuel cells and battery electrodes, in chemical synthesis, and in certain electronic and metallurgical applications.

NiO

Nickel Oxide black

Chemical Formula:

NiO

CAS No.: 1313-99-1
Appearance: Has a black color, usually in the form of coarse powder or granules
About Nickel Oxide black:

Nickel Oxide black is primarily used as a catalyst in various chemical reactions and as a raw material for the production of other nickel compounds.

NiO

Nickel Oxide brown

Chemical Formula:

NiO

CAS No.: 1313-99-1
Appearance: Has a brown color, usually in the form of fine powder
About Nickel Oxide brown:

Nickel Oxide brown is often used as a colorant in ceramics, glass, and pigments due to its brown color. Its stability at high temperatures makes it ideal for adding durable color to various materials in industrial applications.

Ni(OH)2

Nickel Hydroxide

Chemical Formula:

Ni(OH)2

CAS No.: 12054-48-7
Appearance: Green powder
About Nickel Hydroxide:

Nickel Hydroxide is a key intermediate in the production of other nickel salts.

Additionally, Nickel Hydroxide is utilized in battery technology to create Nickel Hydroxide electrodes

H2WO4(WO3*H2O)

Tungstic Acid

Chemical Formula:

H2WO4(WO3*H2O)

CAS No.: 7783-03-1
Appearance: White or pale yellow powder
About Tungstic Acid:

Tungstic acid plays a vital role in the overall tungsten production process, serving as an intermediate compound that facilitates the conversion of Tungsten ores or secondary materials into various Tungsten products and alloys. It is an essential chemical component in industries such as aerospace, electronics, mining, and metallurgy, where Tungsten’s unique properties are utilized for a wide range of applications.

CuO

Copper Oxide HPG

Chemical Formula:

CuO

CAS No.: 1317-38-0
Appearance: a black or brownish-black powder
About Copper Oxide HPG:

Copper Oxide HPG is a high-purity form of Copper Oxide, characterized by its exceptional purity and quality, making it suitable for specialized applications in various industries, including electronics and semiconductors.it is also used in the ceramics industry.

CuCl2

Copper Chloride Solution

Chemical Formula:

CuCl2

CAS No.: 7447-39-4
Appearance: Green solution
About Copper Chloride Solution:

Copper chloride solution has diverse applications, including electroplating for enhanced conductivity, PCB manufacturing as an etching agent, catalyst in chemical reactions, pigment and dye production, wood preservation, gas desulfurization, pyrotechnics for colored flames, and analytical chemistry in laboratories.

CuCO3

Copper Carbonate

Chemical Formula:

CuCO3

CAS No.: 12069-69-1
Appearance: Powdery green solid
About Copper Carbonate:

Copper carbonate is used as raw material in the electroplating and agricultural industries. Copper carbonate is also used for the production of pigments and as raw material used in wood protective formulations.

CuSO4.5H2O

Copper Sulfate HPG

Chemical Formula:

CuSO4.5H2O

CAS No.: 7758-99-8
Appearance: White chrystalline powder
About Copper Sulfate HPG:

Copper Sulfate HPG is a high-purity form of copper sulfate, which is a well-known compound used in various industrial applications, including agriculture as a fungicide and in the preparation of copper-based chemicals and pigments.

MoO3

Molybdenum Trioxide

Chemical Formula:

MoO3

CAS No.: 1313-27-5
Appearance: Fiant yellow/light grey powder
About Molybdenum Trioxide:

Molybdenum trioxide is used as a catalyst for desulphurisation reactions and as raw material for production of pigments in the ceramic industry and for the production of frits.

Na2MoO4.2H2O

Sodium Molybdate Dihydrate

Chemical Formula:

Na2MoO4.2H2O

CAS No.: 10102-40-6
Appearance: White crystalline powder
About Sodium Molybdate Dihydrate:

Sodium molybdate is used as a Oligo- element for the agricultural industry, as raw material for the metal surface treatment industry and for the pigments production.

Na2MoO4

Sodium Molybdate Anhydrous

Chemical Formula:

Na2MoO4

CAS No.: 7631-95-0
Appearance: White crystalline powder
About Sodium Molybdate Anhydrous:

Sodium molybdate is used as a Oligo- element for the agricultural industry, as raw material for the metal surface treatment industry and for the pigments production.

ZnSeO3

Zinc Selenite

Chemical Formula:

ZnSeO3

CAS No.: 13597-46-1
Appearance: a white or colorless crystalline solid
About Zinc Selenite:

As a solid crystalline material, Zinc Selenite may be used in various applications, including as a precursor for other zinc and selenium compounds, as well as in certain industrial processes and research applications.

ZnO

Zinc Oxide Technical

Chemical Formula:

ZnO

CAS No.: 1314-13-2
Appearance: a white, fine powder
About Zinc Oxide Technical:

Zinc Oxide Technical is widely used in the rubber industry to enhance mechanical properties and heat resistance in rubber goods. In ceramics, it acts as a flux, lowering the melting point of glazes and improving adhesion. Additionally, it finds applications in paints, coatings, electronics, adhesives, and as a dietary supplement in animal feed stock.

Sb2O3

Antimony Trioxide

Chemical Formula:

Sb2O3

CAS No.: 1309-64-4
Appearance: a white, odorless powder
About Antimony Trioxide:

The key applications of Antimony Trioxide are as a flame retardant in plastics, textiles, and coatings, a catalyst in chemical production, an opacifier in glass and ceramics, and to enhance fire resistance in electronics, cable insulation, textiles, and upholstery. It is also used as a precursor in the production of various antimony compounds.

CdCO3

Cadmiun Carbonate

Chemical Formula:

CdCO3

CAS No.: 513-78-0
Appearance: a white crystalline powder
About Cadmiun Carbonate:

Cadmium Carbonate is primarily used as a precursor in the production of other cadmium compounds, such as cadmium oxide and cadmium salts. It is also utilized in pigments and ceramics, where it contributes to certain desirable properties.

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