Growth and self-assembly of Silicon–Silicon carbide nanoparticles into hybrid worm-like nanostructures at the silicon wafer surface

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Abstract

This work describes the growth of silicon–silicon carbide nanoparticles (Si–SiC) and their self-assembly into worm-like 1D hybrid nanostructures at the interface of graphene oxide/silicon wafer (GO/Si) under Ar atmosphere at 1000◦ C. Depending on GO film thickness, spread silicon nanoparticles apparently develop on GO layers, or GO-embedded Si–SiC nanoparticles self-assembled into some-micrometers-long worm-like nanowires. It was found that the nanoarrays show that carbon–silicon-based nanowires (CSNW) are standing on the Si wafer. It was assumed that Si nanoparticles originated from melted Si at the Si wafer surface and GO-induced nucleation. Additionally, a mechanism for the formation of CSNW is proposed.

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Perez-Guzman, M. A., Ortega-Amaya, R., Matsumoto, Y., Espinoza-Rivas, A. M., Morales-Corona, J., Santoyo-Salazar, J., & Ortega-Lopez, M. (2018). Growth and self-assembly of Silicon–Silicon carbide nanoparticles into hybrid worm-like nanostructures at the silicon wafer surface. Nanomaterials, 8(11). https://doi.org/10.3390/nano8110954

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