VLS and VS effect on ferromagnetic behavior of SnO2 nanobelts
Fabrication of SnO 2 nanobelts has been carried out by employing vapor liquid solid (VLS) and vapor solid (VS) mechanism. The nanobelts attained by VLS mechanism were fabricated at relatively low temperature using Fe powders as a catalyst by means of chemical vapour deposition (CVD) technique. The d...
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Published in | 2012 International Conference on Enabling Science and Nanotechnology pp. 1 - 2 |
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Format | Conference Proceeding |
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01.01.2012
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Abstract | Fabrication of SnO 2 nanobelts has been carried out by employing vapor liquid solid (VLS) and vapor solid (VS) mechanism. The nanobelts attained by VLS mechanism were fabricated at relatively low temperature using Fe powders as a catalyst by means of chemical vapour deposition (CVD) technique. The direct thermal evaporation of SnO 2 nanobelts was carried out at 1350°C in the atmosphere of Argon gas via VS mechanism. In both cases the ramp rate was adjusted to 10°C/minute. |
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AbstractList | Fabrication of SnO 2 nanobelts has been carried out by employing vapor liquid solid (VLS) and vapor solid (VS) mechanism. The nanobelts attained by VLS mechanism were fabricated at relatively low temperature using Fe powders as a catalyst by means of chemical vapour deposition (CVD) technique. The direct thermal evaporation of SnO 2 nanobelts was carried out at 1350°C in the atmosphere of Argon gas via VS mechanism. In both cases the ramp rate was adjusted to 10°C/minute. |
Author | Khan, W. S. Ahmed, R. Butt, F. K. Ali, Z. Chuanbao Cao |
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Snippet | Fabrication of SnO 2 nanobelts has been carried out by employing vapor liquid solid (VLS) and vapor solid (VS) mechanism. The nanobelts attained by VLS... |
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SubjectTerms | Fuel processing industries Magnetic resonance imaging Magnetometers Nanotechnology Scanning electron microscopy Solids X-ray scattering |
Title | VLS and VS effect on ferromagnetic behavior of SnO2 nanobelts |
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