Research paperExperimental GrowthExperimental CharacterizationSynthesis and Structural Analysis of Multilayered Graphene via Microwave Atmospheric Pressure PlasmaWaqas Iqbal, Najeeb-ur-Rehman, Niaz Wali2024·10.48550/arxiv.2403.03813·arXiv:2403.03813AbstractThis study reports the successful synthesis of multilayered graphene sheets via microwave atmospheric pressure plasma. Ethanol is directly injected into a microwave-generated argon plasma plume, leading to the formation of graphene. Raman spectroscopy, X-ray diffraction, and scanning electron microscopy were used to characterize the product. Raman peaks at 2D, G, and D bands confirmed graphene composition, and the D/G intensity ratio indicated defects while the 2D/G ratio suggested multilayer graphene. X-ray diffraction showed a broad peak near 25° corresponding to the (002) plane, supporting multilayer graphene structure.Read more
Graphene sheets collected on a nylon filter after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations6 properties2 figuresExperimentalCStudied MaterialNylon filterSubstrate / DielectricExpand
Graphene sheets deposited on a glass plate after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations2 properties3 figuresExperimentalCStudied MaterialGlass plateSubstrate / DielectricExpand
Research paperExperimental GrowthExperimental CharacterizationSynthesis and Structural Analysis of Multilayered Graphene via Microwave Atmospheric Pressure PlasmaWaqas Iqbal, Najeeb-ur-Rehman, Niaz Wali2024·10.48550/arxiv.2403.03813·arXiv:2403.03813AbstractThis study reports the successful synthesis of multilayered graphene sheets via microwave atmospheric pressure plasma. Ethanol is directly injected into a microwave-generated argon plasma plume, leading to the formation of graphene. Raman spectroscopy, X-ray diffraction, and scanning electron microscopy were used to characterize the product. Raman peaks at 2D, G, and D bands confirmed graphene composition, and the D/G intensity ratio indicated defects while the 2D/G ratio suggested multilayer graphene. X-ray diffraction showed a broad peak near 25° corresponding to the (002) plane, supporting multilayer graphene structure.Read more
Graphene sheets collected on a nylon filter after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations6 properties2 figuresExperimentalCStudied MaterialNylon filterSubstrate / DielectricExpand
Graphene sheets deposited on a glass plate after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations2 properties3 figuresExperimentalCStudied MaterialGlass plateSubstrate / DielectricExpand
Research paperExperimental GrowthExperimental CharacterizationSynthesis and Structural Analysis of Multilayered Graphene via Microwave Atmospheric Pressure PlasmaWaqas Iqbal, Najeeb-ur-Rehman, Niaz Wali2024·10.48550/arxiv.2403.03813·arXiv:2403.03813AbstractThis study reports the successful synthesis of multilayered graphene sheets via microwave atmospheric pressure plasma. Ethanol is directly injected into a microwave-generated argon plasma plume, leading to the formation of graphene. Raman spectroscopy, X-ray diffraction, and scanning electron microscopy were used to characterize the product. Raman peaks at 2D, G, and D bands confirmed graphene composition, and the D/G intensity ratio indicated defects while the 2D/G ratio suggested multilayer graphene. X-ray diffraction showed a broad peak near 25° corresponding to the (002) plane, supporting multilayer graphene structure.Read more
Graphene sheets collected on a nylon filter after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations6 properties2 figuresExperimentalCStudied MaterialNylon filterSubstrate / DielectricExpand
Graphene sheets deposited on a glass plate after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations2 properties3 figuresExperimentalCStudied MaterialGlass plateSubstrate / DielectricExpand
Research paperExperimental GrowthExperimental CharacterizationSynthesis and Structural Analysis of Multilayered Graphene via Microwave Atmospheric Pressure PlasmaWaqas Iqbal, Najeeb-ur-Rehman, Niaz Wali2024·10.48550/arxiv.2403.03813·arXiv:2403.03813AbstractThis study reports the successful synthesis of multilayered graphene sheets via microwave atmospheric pressure plasma. Ethanol is directly injected into a microwave-generated argon plasma plume, leading to the formation of graphene. Raman spectroscopy, X-ray diffraction, and scanning electron microscopy were used to characterize the product. Raman peaks at 2D, G, and D bands confirmed graphene composition, and the D/G intensity ratio indicated defects while the 2D/G ratio suggested multilayer graphene. X-ray diffraction showed a broad peak near 25° corresponding to the (002) plane, supporting multilayer graphene structure.Read more
Graphene sheets collected on a nylon filter after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations6 properties2 figuresExperimentalCStudied MaterialNylon filterSubstrate / DielectricExpand
Graphene sheets deposited on a glass plate after microwave atmospheric pressure plasma synthesis.1 preparation2 characterizations2 properties3 figuresExperimentalCStudied MaterialGlass plateSubstrate / DielectricExpand