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Low-cost, large-scale, and facile production of Si nanowires exhibiting enhanced third-order optical nonlinearity

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Authors

Huang, Zhipeng
Wang, R
Jia, Ding
Maoying, Li
Humphrey, Mark
Zhang, Chi

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American Chemical Society

Abstract

A facile method for the low-cost and large-scale production of silicon nanowires has been developed. Silicon powders were subjected to sequential metal plating and metal-assisted chemical etching, resulting in well-defined silicon nanowires. The morphology and structure of the silicon nanowires were investigated, revealing that single-crystal silicon nanowires with average diameters of 79 ± 35 nm and length more than 10 μm can be fabricated. The silicon nanowires show excellent third-order nonlinear optical properties, with a third-order susceptibility much larger than that of bulk silicon, porous silicon, and silicon nanocrystals embedded in SiO 2.

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Journal of the American Chemical Society

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Restricted until

2037-12-31