Etching anisotropy mechanisms lead to morphology-controlled silicon nanoporous structures by metal assisted chemical etching

Nanoscale
Bing JiangJian Luo

Abstract

The etching anisotropy induced by the morphology and rotation of silver particles controls the morphology of silicon nanoporous structures, through various underlying complex etching mechanisms. The level of etching anisotropy can be modulated by controlling the morphology of the silver catalyst to obtain silicon nanoporous structures with straight pores, cone-shaped pores and pyramid-shaped pores. In addition, the structures with helical pores are obtained by taking advantage of the special anisotropic etching, which is induced by the rotation and revolution of silver particles during the etching process. An investigation of the etching anisotropy during metal assisted chemical etching will promote a deep understanding of the chemical etching mechanism of silicon, and provide a feasible approach to fabricate Si nanoporous structures with special morphologies.

References

Sep 23, 2010·Advanced Materials·Zhipeng HuangUlrich Gösele
Jan 5, 2012·Nanoscale Research Letters·Mou PalFelipe Pérez-Rodríguez
Jun 29, 2012·Nanoscale Research Letters·Shinji YaeHitoshi Matsuda
May 3, 2013·ACS Applied Materials & Interfaces·Nadine GeyerPeter Werner
Jul 13, 2013·Chemical Communications : Chem Comm·Chia-Yun Chen, Ching-Ping Wong
Aug 3, 2013·Journal of the American Chemical Society·Guoliang LiuChad A Mirkin

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