Title of article
Unconventional Ni–P alloy-catalyzed CVD of carbon coil-like micro- and nano-structures
Author/Authors
Sheng-Hui Bi، نويسنده , , KAI-CHANG KOU، نويسنده , , Kostya (Ken) Ostrikov، نويسنده , , Lu Ke Yan، نويسنده , , Jiao Qiang Zhang، نويسنده , , Tie Zheng Ji، نويسنده , , Zhi Chao Wang، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2009
Pages
7
From page
442
To page
448
Abstract
Conventional catalyzed thermal CVD of carbon microcoils commonly suffers from poor control of the coil shape and morphology and rarely reaches the nanoscale size range. This article reports on an unconventional Ni–P alloy-catalyzed, high-throughput, highly reproducible CVD of ultra-long carbon coil-like micro- and nano-structures using acetylene precursor at relatively low process temperatures. Helical carbon microcoils with consistently uniform, circular cross-sections and a high degree of crystallinity have been synthesized at 750 °C. A further reduction of the temperature to 650 °C led to the growth of ultra-long (up to several mm) wave-like carbon nanofibers made of two nanowires with the diameters in the 100–200 nm range. The results of the XRD and Raman analysis reveal that the nanofibers feature only a slightly more disordered structure compared to the microcoils. Our results suggest that morphology and structure of the carbon coil-like micro- and nano-structures can be tailored by the appropriate alloying of the catalyst and the choice of the CVD process parameters.
Keywords
Carbon , Nanofibers , Synthesis , Nanowires , Catalyzed CVD , Microcoils
Journal title
Materials Chemistry and Physics
Serial Year
2009
Journal title
Materials Chemistry and Physics
Record number
1061768
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