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Microstructural Control of Pyrolytic Carbon Layer Deposited from Methane by Isotropic Chemical Vapor Infiltration
Young-Seok Jeong, Kyoon Choi, Ho Gyu Yoon
J. Korean Ceram. Soc.. 2019;56(3):291-297.   Published online 2019 May 23    DOI: https://doi.org/10.4191/kcers.2019.56.3.09

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Microstructural Control of Pyrolytic Carbon Layer Deposited from Methane by Isotropic Chemical Vapor Infiltration
Journal of the Korean Ceramic Society. 2019;56(3):291-297   Crossref logo
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Pyrolytic-carbon coatings deposited from methane fluid beds
Carbon. 1967;5(6):613-617   Crossref logo
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Modeling of chemical vapor infiltration of carbon composites with pyrolytic carbon
Chemical Engineering Science. 1990;45(8):2505-2510   Crossref logo
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58. Morphology of growth features in isotropic pyrolytic carbons deposited below 1500°C
Carbon. 1973;11(6):677   Crossref logo
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Simulation of a multiple substrate reactor for chemical vapor infiltration of pyrolytic carbon within carbon-carbon composites
AIChE Journal. 1993;39(7):1196-1209   Crossref logo
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Textures of pyrolytic carbon formed in the chemical vapor infiltration of capillaries
Carbon. 2003;41(1):97-104   Crossref logo
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Chemical vapor infiltration of pyrocarbon—III: the influence of increasing methane partial pressure at increasing total pressure on infiltration rate and degree of pore filling
Carbon. 1999;37(2):181-193   Crossref logo
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Pyrolytic carbon deposition from methane: An analytical approach to the chemical process
Carbon. 1990;28(1):207-219   Crossref logo
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Influence of pressure, temperature and surface area/volume ratio on the texture of pyrolytic carbon deposited from methane
Carbon. 2003;41(4):749-758   Crossref logo
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04/02807 Preparation of negative electrodes for lithium-ionrechargeable battery by pressure-pulsed chemical vapor infiltration of pyrolytic carbon into electro-conductive forms
Fuel and Energy Abstracts. 2004;45(6):397-398   Crossref logo
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