The microwave plasma process inherently produces nanoparticulate powders with very narrow particle size distribution. During synthesis, the particles carry electric charges of equal sign. Therefore, by electrostatic repulsion, particle growth is reduced and agglomeration thwarted. This is shown by gas kinetic considerations and experimental results. Furthermore, this process allows coating of the particles with organic or inorganic phases, reducing interaction of different particles. This makes it possible to technically exploit properties, characteristic for isolated particles. Additionally, the coating process allows the combination of different properties such as superparamagnetism and luminescence, as it is demonstrated in different examples.
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Suga Co Ltd, Hokuto 0490101, South Korea
Hokkaido Univ, Fac Engn, Div Mat Sci & Engn, Sapporo, Hokkaido 060, JapanSuga Co Ltd, Hokuto 0490101, South Korea
Narushima, Takashi
Yoshioka, Takayuki
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Suga Co Ltd, Hokuto 0490101, South KoreaSuga Co Ltd, Hokuto 0490101, South Korea
Yoshioka, Takayuki
Miyazaki, Hideki
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Suga Co Ltd, Hokuto 0490101, South KoreaSuga Co Ltd, Hokuto 0490101, South Korea
Miyazaki, Hideki
Suga, Ikumasa
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Suga Co Ltd, Hokuto 0490101, South KoreaSuga Co Ltd, Hokuto 0490101, South Korea
Suga, Ikumasa
Sato, Susumu
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ARIOS Co Ltd, Tokyo 1960021, JapanSuga Co Ltd, Hokuto 0490101, South Korea
Sato, Susumu
Yonezawa, Tetsu
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Hokkaido Univ, Fac Engn, Div Mat Sci & Engn, Sapporo, Hokkaido 060, JapanSuga Co Ltd, Hokuto 0490101, South Korea