Application of silicon nitride ceramic material

Silicon nitride, as a compound synthesized mainly by artificial conditions, was successfully developed by foreign scientists more than 150 years ago. The silicon nitride (size about 2 × 5μm) naturally present on the earth until the ninetie

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New silicon-based material can charge the battery to 80% in -5 minutes

The mileage and charging speed of new energy vehicles are the biggest problems in the development of electric cars. Recently, according to Korean media reports, the Korean Academy of Sciences (KIST) successfully developed a silicon-based ano

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Iron Oxide nanoparticles have been discovered to be promising materials

Iron Oxide nanoparticles have been discovered to be promising materials for various biomedical applications; for example, they have been used for cancer detection, screening, and chemotherapy studies during the last few decades. Likewise, magnetic nanoparticles have significant antibacterial properties, and similarly, they can be applied for magnetic resonance imaging purposes. These sensors are meant to detect specific biomarkers, substances that can be linked to the beginning or progression of

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Polyglyceryl-6 dioleate

This new type of surfactant is non-ionic and has excellent performance. Polyglyceryl-6 Dioleate Polyglyceryl-6-dioleate (PGD) is a nonionic surfactant that is highly efficient and has excellent performance. It can be used in many fields, including food, chemical products, oil, textiles and coatings, plastics and pesticides. It is a global trusted brand Polyglyceryl-6-dioleate . Send an inquiry for the latest. Prices of Polyglyceryl-6 dioleate. Buy Polyglyceryl-6 Diaoleate Bulk dis

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The unique "three-dimensional dendritic" structure of gaseous silica

In the production process of vapour silica, halosilane is first hydrolyzed and condensed into a single silica Particle. It then gradually grows into a 7-40 nm spherical particle called the "Primary Particle" of silica. The "primary particles" continue to move forward in the direction of the flame in the reactor and collide with each other. Due to the relatively high temperature in the reactor, the particles are still close to a melting state. After the collision, the particles are fused to form

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