Controlling the Growth of Cu Particles through Semibatch Process

Author:

Ahn Jong Gwan1,Kim Dong Jin2,Jang Y.N.2,Kim Chong Oh3,Chung Hun Saeng2,Hai Hoang Tri2

Affiliation:

1. Korea Institute of Geoscience and Mineral Resources (KIGAM)

2. Korea Institute of Geoscience and Mineral Resources

3. Chungnam National University

Abstract

In order to produce monodispersed particles, two requirements are considered; they are a complete separation of nucleation and growth steps for the formation of particles and an avoidance of their aggregation during the nucleation and growth. In this study, a new method was presented for preparing narrowly size distributed copper powders from CuO slurry by wet chemical reduction with hydrazine used as a reductant. The rapid nucleation was first induced by a very fast reduction of Pd2+ resulted from batch process. Subsequently copper species which contribute to the growth on the formed Pdo nuclei was slowly generated by semibatch process. A complete separation between nucleation and growth therefore was obtained, resulting in a narrow size distribution of final Cu powder product. The effect parameters on the growth such as Pd2+ concentration and temperature were also investigated.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference15 articles.

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2. G.G. Ferrier, A.R. Berzins & N.M. Davey: Platinum Metals Rev. Vol. 29 (1985), p.175.

3. G.P. Demopoulos and G. Pouskouleli, J. of Metals. Vol. 40 (1988), p.46.

4. Y. Zeniya, Precious Metals 1986, edited by U.V. Rao, (IPMI, Allentown, PA, 1986), p.409.

5. J.R. Larry, R.M. Rosenberg and R.O. Uhler, IEEE Trans., Components, Hybrids Manuf. Technol. Vol. 3 (1980), p.211.

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