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  5. Synthesis and Optical Properties of Nanorattles and Multiple-Walled Nanoshells/Nanotubes Made of Metal Alloys

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Article
en
2004

Synthesis and Optical Properties of Nanorattles and Multiple-Walled Nanoshells/Nanotubes Made of Metal Alloys

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en
2004
Vol 126 (30)
Vol. 126
DOI: 10.1021/ja048789r

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Younan Xia
Younan Xia

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Yugang Sun
Benjamin J. Wiley
Zhiyuan Li
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Abstract

The galvanic replacement reaction between silver and chloroauric acid has been exploited as a powerful means for preparing metal nanostructures with hollow interiors. Here, the utility of this approach is further extended to produce complex core/shell nanostructures made of metals by combining the replacement reaction with electroless deposition of silver. We have fabricated nanorattles consisting of Au/Ag alloy cores and Au/Ag alloy shells by starting with Au/Ag alloy colloids as the initial template. We have also prepared multiple-walled nanoshells/nanotubes (or nanoscale Matrioshka) with a variety of shapes, compositions, and structures by controlling the morphology of the template and the precursor salt used in each step of the replacement reaction. There are a number of interesting optical features associated with these new core/shell metal nanostructures. For example, nanorattles made of Au/Ag alloys displayed two well-separated extinction peaks, a feature similar to that of gold or silver nanorods. The peak at approximately 510 nm could be attributed to the Au/Ag alloy cores, while the other peak was associated with the Au/Ag alloy shells and could be continuously tuned in the spectral range from red to near-infrared.

How to cite this publication

Yugang Sun, Benjamin J. Wiley, Zhiyuan Li, Younan Xia (2004). Synthesis and Optical Properties of Nanorattles and Multiple-Walled Nanoshells/Nanotubes Made of Metal Alloys. , 126(30), DOI: https://doi.org/10.1021/ja048789r.

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Publication Details

Type

Article

Year

2004

Authors

4

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/ja048789r

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