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Electrodeposition of metals from supercritical fluids.


ABSTRACT: Electrodeposition is a widely used materials-deposition technology with a number of unique features, in particular, the efficient use of starting materials, conformal, and directed coating. The properties of the solvent medium for electrodeposition are critical to the technique's applicability. Supercritical fluids are unique solvents which give a wide range of advantages for chemistry in general, and materials processing in particular. However, a widely applicable approach to electrodeposition from supercritical fluids has not yet been developed. We present here a method that allows electrodeposition of a range of metals from supercritical carbon dioxide, using acetonitrile as a co-solvent and supercritical difluoromethane. This method is based on a careful selection of reagent and supporting electrolyte. There are no obvious barriers preventing this method being applied to deposit a range of materials from many different supercritical fluids. We present the deposition of 3-nm diameter nanowires in mesoporous silica templates using this methodology.

SUBMITTER: Ke J 

PROVIDER: S-EPMC2736432 | biostudies-literature | 2009 Sep

REPOSITORIES: biostudies-literature

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Electrodeposition of metals from supercritical fluids.

Ke Jie J   Su Wenta W   Howdle Steven M SM   George Michael W MW   Cook David D   Perdjon-Abel Magda M   Bartlett Philip N PN   Zhang Wenjian W   Cheng Fei F   Levason William W   Reid Gillian G   Hyde Jason J   Wilson James J   Smith David C DC   Mallik Kanad K   Sazio Pier P  

Proceedings of the National Academy of Sciences of the United States of America 20090814 35


Electrodeposition is a widely used materials-deposition technology with a number of unique features, in particular, the efficient use of starting materials, conformal, and directed coating. The properties of the solvent medium for electrodeposition are critical to the technique's applicability. Supercritical fluids are unique solvents which give a wide range of advantages for chemistry in general, and materials processing in particular. However, a widely applicable approach to electrodeposition  ...[more]

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