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Applied Physics Letters : Crystalline silicon carbide nanocones and heterostructures induced by released iron nanoparticles

By Zhenyu Liu, Lijie Ci, V. Srot, N. Y. Jin-Phillipp, Peter A. van Aken et al

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Book Id: WPLBN0002169241
Format Type: PDF eBook :
File Size: Serial Publication
Reproduction Date: 10 December 2008

Title: Applied Physics Letters : Crystalline silicon carbide nanocones and heterostructures induced by released iron nanoparticles  
Author: Zhenyu Liu, Lijie Ci, V. Srot, N. Y. Jin-Phillipp, Peter A. van Aken et al
Volume: Issue : December 2008
Language: English
Subject: Science, Physics, Natural Science
Collections: Periodicals: Journal and Magazine Collection, Applied Physics Letters Collection
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Publisher: American Institute of Physics

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Lijie Ci, V. Srot, N. Y. Jin-Phillipp, Peter A. Van Aken Et A, Z. L. (n.d.). Applied Physics Letters : Crystalline silicon carbide nanocones and heterostructures induced by released iron nanoparticles. Retrieved from http://nationalpubliclibrary.info/


Description
Description: We present the formations of crystalline silicon carbide (SiC) nanocones and heterostructures catalyzed by iron nanoparticles, originally encapsulated in graphite-like carbon shells, via the vapor-liquid-solid process. We propose that the nanocone shape is due to the release of iron nanoparticles from their carbon shells followed by agglomeration, where the increasing size of the iron nanoparticle during SiC growth creates the nanocone shape. The release and agglomeration model may explain the formation of multisegmented SiC nanostructures. The encapsulation and controlled release of the metal catalyst is a promising method for the synthesis of unusual one-dimensional nanostructures and complex heterostructures.

 

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