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Synthesis and Application of Stable Copper Oxide Nanoparticle Suspensions for Nanoparticulate Film Fabrication

発表形態:
原著論文
主要業績:
主要業績
単著・共著:
分担執筆の共著
発表年月:
2007年01月
DOI:
会議属性:
指定なし
査読:
有り
リンク情報:

日本語フィールド

著者:
Tetsuya Kida, Takanori Oka, Masamitsu Nagano, Yoichi Ishiwata and Xu-Guang Zheng
題名:
Synthesis and Application of Stable Copper Oxide Nanoparticle Suspensions for Nanoparticulate Film Fabrication
発表情報:
Journal of the American Ceramic Society 巻: 90 号: 1 ページ: 107-110
キーワード:
概要:
抄録:
Colloidal suspensions of copper oxide (CuO) nanoparticles were prepared by an alcothermal method, in which copper acetate was reacted with sodium hydroxide in the presence of acetic acid in ethanol at 78 C. The prepared suspension was stable for up to 1 month without stabilizers such as surfactants. Transmission electron microscopy analyses revealed that the suspension contained nanosized CuO particles of 5–10 nm size with a narrow size distribution. Nanoparticulate CuO films packed with grains smaller than 60 nm were fabricated on Si substrates by spin coating a suspension of CuO nanoparticles and subsequent heat treatment at 500 C.

英語フィールド

Author:
Tetsuya Kida, Takanori Oka, Masamitsu Nagano, Yoichi Ishiwata and Xu-Guang Zheng
Title:
Synthesis and Application of Stable Copper Oxide Nanoparticle Suspensions for Nanoparticulate Film Fabrication
Announcement information:
Journal of the American Ceramic Society Vol: 90 Issue: 1 Page: 107-110
An abstract:
Colloidal suspensions of copper oxide (CuO) nanoparticles were prepared by an alcothermal method, in which copper acetate was reacted with sodium hydroxide in the presence of acetic acid in ethanol at 78 C. The prepared suspension was stable for up to 1 month without stabilizers such as surfactants. Transmission electron microscopy analyses revealed that the suspension contained nanosized CuO particles of 5–10 nm size with a narrow size distribution. Nanoparticulate CuO films packed with grains smaller than 60 nm were fabricated on Si substrates by spin coating a suspension of CuO nanoparticles and subsequent heat treatment at 500 C.


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