Statistical analysis of the synthesis of carbon nanotubes using wet-impregnated catalysts for improved robustness
- Authors
- Song, Hyeongyun; Kim, Dong Hwan; Park, Cheol Woo; Jae, Jungho; Hong, Seungki; Lee, Jaegeun
- Issue Date
- 2023-05
- Publisher
- 한국탄소학회
- Citation
- Carbon Letters, v.33, no.3, pp.921 - 929
- Abstract
- Mass production of high-quality carbon nanotubes (CNTs) remains a challenge, requiring the development of new wet-impregnated catalyst suitable for the catalytic chemical vapor deposition (CCVD) of CNTs in a fluidized bed reactor. For the successful development of a new catalyst, a highly robust system to synthesize CNTs must be established. Here, we systematically investigated the robustness of CNT synthesis by CCVD using a wet-impregnated catalyst. We statistically tested four factors that could potentially affect the robustness of CNT synthesis system, focusing on carbon yield and I-G/I-D. First, we tested the effect of vacuum baking before CNT growth. F test and CV equality test concluded that vacuum baking recipe did not significantly reduce the variability of the CNT synthesis. Second, we tested the batch-to-batch variation of catalysts. The results of t test and one-way analysis of variance indicate that there is significant difference in carbon yield and I-G/I-D among catalysts from different batches. Third, we confirmed that there is spatial non-uniformity of wet-impregnated catalysts within a batch when they are produced in large scale. Finally, we developed a multi-step heating recipe to mitigate the temperature overshooting during the CNT synthesis. The multi-step recipe increased the mean of carbon yield, but did not influence the variability of CNT synthesis. We believe that our research can contribute to the establishment of a robust CNT synthesis system and development of new wet-impregnated catalysts.
- Keywords
- CHEMICAL-VAPOR-DEPOSITION; LARGE-SCALE SYNTHESIS; THERMOGRAVIMETRIC ANALYSIS; MASS-PRODUCTION; GROWTH; EVOLUTION; CVD; COEFFICIENTS; EQUALITY; FORESTS; Carbon nanotubes; Wet impregnation; Catalyst; Robustness; ANOVA
- ISSN
- 1976-4251
- URI
- https://pubs.kist.re.kr/handle/201004/113786
- DOI
- 10.1007/s42823-023-00473-8
- Appears in Collections:
- KIST Article > 2023
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