Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process
The effects of experimental factors such as type of catalyst (nickel and cobalt) and substrate (iron and silicon wafer) in the growth of carbon nanotubes (CNT) from CO2 by microwave plasma-enhanced chemical vapor deposition (MPECVD) was systematically studied. Catalyst size and CNT grown were examin...
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oai:animorepository.dlsu.edu.ph:faculty_research-49822021-09-02T06:52:11Z Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process Baldovino, Fritzie Hannah B. Auresenia, Joseph L. The effects of experimental factors such as type of catalyst (nickel and cobalt) and substrate (iron and silicon wafer) in the growth of carbon nanotubes (CNT) from CO2 by microwave plasma-enhanced chemical vapor deposition (MPECVD) was systematically studied. Catalyst size and CNT grown were examined using scanning electron microscope (SEM). Furthermore, gas chromatography (GC) was used to analyze the effluent gas. Moreover, suitable type of catalyst and substrate were determined in terms on the amount of CNT grown, purity, and carbon conversion. © 2014, Gadjah Mada University. All rights reserved. 2014-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/4003 info:doi/10.22146/ajche.49714 Faculty Research Work Animo Repository Carbon nanotubes Nanotechnology Chemical vapor deposition Physics |
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Carbon nanotubes Nanotechnology Chemical vapor deposition Physics Baldovino, Fritzie Hannah B. Auresenia, Joseph L. Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process |
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The effects of experimental factors such as type of catalyst (nickel and cobalt) and substrate (iron and silicon wafer) in the growth of carbon nanotubes (CNT) from CO2 by microwave plasma-enhanced chemical vapor deposition (MPECVD) was systematically studied. Catalyst size and CNT grown were examined using scanning electron microscope (SEM). Furthermore, gas chromatography (GC) was used to analyze the effluent gas. Moreover, suitable type of catalyst and substrate were determined in terms on the amount of CNT grown, purity, and carbon conversion. © 2014, Gadjah Mada University. All rights reserved. |
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Baldovino, Fritzie Hannah B. Auresenia, Joseph L. |
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Baldovino, Fritzie Hannah B. Auresenia, Joseph L. |
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Baldovino, Fritzie Hannah B. |
title |
Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process |
title_short |
Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process |
title_full |
Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process |
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Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process |
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Effect of experimental factors in the growth of carbon nanotubes from co2 by MPECVD process |
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effect of experimental factors in the growth of carbon nanotubes from co2 by mpecvd process |
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