Self-Organization Process of Secondary Crystal Nodules from Individual Nuclei in Electrodeposition
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概要
- 論文の詳細を見る
Using nonequilibrium fluctuations in electrodeposition, the self-organization process of secondary crystal nodules from individual nuclei was examined. As a result, it was concluded that electrodeposition can be described by two types of fluctuation, i.e., symmetrical and asymmetrical fluctuations; the former yields three-dimensional (3D) nuclei, whereas the latter yields two-dimensional (2D) nuclei that determine the spatial distribution of the 3D nuclei. The complex self-organization of these two types of nuclei leads to the aggregation of each 3D nucleus. In the present paper, first, the instability of these fluctuations was discussed. Then, it was shown that asymmetrical fluctuations control the total reaction rate, and lead to nucleation currents in silver nucleation. Finally, the crystal morphology yielded by the symmetrical and asymmetrical fluctuations was visualized by computer calculation, and the aggregation process of 3D nuclei to secondary nodules was examined.
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2005-07-15
著者
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YAMADA Akifumi
Department of Chemistry, Nagaoka University of Technology
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AOGAKI Ryoichi
Department of Product Design, Polytechnic University
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Aogaki Ryoichi
Department Of Industrial Design Polytechnic University
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Yamada A
Nagaoka Univ. Technology Nagaoka
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Yamada Akifumi
Department Of Chemistry Faculty Of Engineering Nagaoka University Of Technology
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Asanuma Miki
Department of Information Technology, Yokohama Polytechnic College, 1 Honmokuhuto, Naka-ku, Yokohama
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Yamada Akifumi
Department Of Information Technology Yokohama Polytechnic College
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Asanuma Miki
Department Of Information Technology Yokohama Polytechnic College
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AOGAKI Ryoichi
Department of Electronic System Engineering, Polytechnic University
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