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Home » Potassium Titanate Nanopowder (K2O・8TiO2, Purity: 99.99%, APS: 100nm)


Stock No. CAS MSDS Specification COA
NS6130-12-000084 12030-97-6 MSDS pdf Specification pdf COA pdf

Potassium Titanate Nanopowder

(K2O・8TiO2, Purity: 99.99%, APS: 100nm)

SEM - Potassium Titanate Nanopowder

SEM - Potassium Titanate Nanopowder

Particles Size of Analysis

Particles Size of Analysis

Product Potassium Titanate Nanopowder
Stock No NS6130-12-000084
CAS 12030-97-6 Confirm
Purity 99.99% Confirm
APS 100nm Confirm
HS Code 28419000 Confirm
Molecular Formula K2O・8TiO2 Confirm
Appearance White needlelike crystal Confirm
Melting Point 1,300~1,350 °C Confirm
pH 9~10 Confirm
Specific gravity 3.3~3.4g/cm³ Confirm
Water content <0.7 % Confirm
Moh's hardness 4 Confirm
Tensile strength 7 GPa Confirm
Tensile modulus 280 GPa Confirm
Electric resistance 3.3×1015 Ω・cm Confirm
Quality Control Each lot of Potassium Titanate Nanopowder was tested successfully.
Main Inspect Verifier Manager QC

Typical Chemical Analysis

Assay 99.99 %

Expert Reviews

Dr. Bruce Perrault, Ph.D, (Georgia Institute of Technology (Georgia Tech), USA)

Potassium Titanate Nanopowder, fibres and whiskers are new materials with high heat resistance and good chemical stability. They have found numerous applications such as ion exchanger materials, thermal insulators, reinforcements, catalysts, photocatalysts and substitutes of asbestos. Many methods have been developed to synthesize potassium titanate fibres and whiskers, including calcination, slow-cooling calcinations, hydrothermal reactions, flux growth (melting), flux evaporation and the combinative route of flux evaporation and the slow-cooling process.

Dr. Myron Rubenstein, Ph.D, (Polytechnic University of Turin, Italy)

Potassium Titanate Nanopowder (PTW) were prepared by a dip-coating and hot-press molding technique, and the tribological properties of the resulting composites were investigated systematically using a ring-on-block arrangement under different sliding conditions. The transfer films formed on the counterpart surfaces made contributions to the improvement of the tribological behavior of the carbon fabric composites.

Dr. Huojin Chan, (University of Science and Technology of China, Hefei, Anhui, China)

Potassium Titanate Nanopowder and whiskers have been discussed, e.g., calcination, hydrothermal reaction, flux growth, sol -gel technique, and others. Because asbestos fibres are known to cause fibrotic diseases in lungs we also refer to studies into the toxicity and carcinogenicity of potassium titanate fibres and whiskers. Potassium titanate whiskers are of great interest for the applications such as friction material, and reinforcement in composite preparation.

Dr. Ms. Yi Yen Shi, (King Mongkut’s University of Technology Thonburi,Bangkok, Thailand)

Potassium Titanate Nanopowder crystal structure and properties of potassium titanates, K2O⋅nTiO2 (n = 2–8), are dependent on the value of n. Characteristic feature of potassium titanates witha high potassium content (n = 2, 4) is the existence of a layer structure. They exhibit a distinctive intercalation capacity and catalytic activity. potassium titanates with a low potassium content (n = 6, 8), they have a tunnel structure and exhibit good thermo-insulation properties and good chemical stability.

Dr. Hans Roelofs Ph.D, (National Technical University of Athens, Greece)

Potassium Titanate Nanopowder applications in areas like photocatalysis, environmental purification, gas sensors, high effect solar cells, etc. These nano-structured titanate nanostructures have been found to have a wide range of application in many important areas. conditions. It is observed that the wear-rate increased with increasing applied load and sliding speeds. Titanate fibers and whiskers are new materials with high heat resistance and chemical stability. They found numerous applications as ions exchanger materials, thermal insulators, reinforcements, catalyst, photocatalysts and substitute of asbestos.

Potassium Titanate Nanopowder

Potassium Titanate Nanopowder

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