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      KCI등재후보

      A Study on CeO2/SiO2 Composite Powder Synthesis Using Ultrasonic Spray Pyrolysis Method and Effect of Sensory Texture Improvement

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      https://www.riss.kr/link?id=A103121043

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      다국어 초록 (Multilingual Abstract)

      The spherical particles of CeO_2/SiO_2 composite powder with narrow-size distribution and pure phase particles were synthesized by ultrasonic spray pyrolysis method from aqueous cerium sulfate solution. The resulting composite powder was characterized by X-ray diffraction, scanning electron microscopy, transmittance electron microscopy, in-vitro sun protect factor, and BET surface area analysis. The concentration of cerium sulfate was tested to vary the particle size from 3.40{times}10^{-3} to 1.02{times}10^{-2}mol/cm^3 to study concentration effect of starting material. The average particle size from the 3.40{times}10^{-3}mol/cm^3 concentration was found to be slightly smaller than that from the 1.02{times}10^{-2}mol/cm^3 concentration, because of the relation between the droplet size and the concentration of the starting material solution
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      The spherical particles of CeO_2/SiO_2 composite powder with narrow-size distribution and pure phase particles were synthesized by ultrasonic spray pyrolysis method from aqueous cerium sulfate solution. The resulting composite powder was characterized...

      The spherical particles of CeO_2/SiO_2 composite powder with narrow-size distribution and pure phase particles were synthesized by ultrasonic spray pyrolysis method from aqueous cerium sulfate solution. The resulting composite powder was characterized by X-ray diffraction, scanning electron microscopy, transmittance electron microscopy, in-vitro sun protect factor, and BET surface area analysis. The concentration of cerium sulfate was tested to vary the particle size from 3.40{times}10^{-3} to 1.02{times}10^{-2}mol/cm^3 to study concentration effect of starting material. The average particle size from the 3.40{times}10^{-3}mol/cm^3 concentration was found to be slightly smaller than that from the 1.02{times}10^{-2}mol/cm^3 concentration, because of the relation between the droplet size and the concentration of the starting material solution

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