Research paperExperimental CharacterizationProduction of Ultra-Thin and High-Quality Nanosheet Networks via Layer-by-Layer Assembly at Liquid-Liquid InterfacesJoseph Neilson, Eoin Caffrey, Oran Cassidy, Cian Gabbett et al.2024·10.48550/arxiv.2410.16952·arXiv:2410.16952AbstractSolution-processable 2D materials are promising candidates for printed electronics, but inter-nanosheet junctions can limit network performance. This work uses liquid-liquid interface assembly to form densely tiled, highly aligned nanosheet networks of graphene, MoS2, and silver nanosheets. The resulting networks exhibit reduced junction resistance relative to nanosheet resistance, with graphene networks reaching high conductivity, MoS₂ networks reaching record mobility at low thickness, and Ag nanosheet networks approaching bulk-silver-like conductivity at sub-100 nm thickness.Read more
Electrochemically exfoliated graphene nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalCStudied MaterialExpand
Electrochemically exfoliated MoS₂ nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Colloidal silver nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalAgStudied MaterialExpand
Liquid-liquid interface assembled graphene network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalCStudied MaterialExpand
Liquid-liquid interface assembled MoS₂ network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Liquid-liquid interface assembled silver nanosheet network film with low thickness and aligned nanosheet packing.3 characterizations2 properties1 figureExperimentalAgStudied MaterialExpand
Research paperExperimental CharacterizationProduction of Ultra-Thin and High-Quality Nanosheet Networks via Layer-by-Layer Assembly at Liquid-Liquid InterfacesJoseph Neilson, Eoin Caffrey, Oran Cassidy, Cian Gabbett et al.2024·10.48550/arxiv.2410.16952·arXiv:2410.16952AbstractSolution-processable 2D materials are promising candidates for printed electronics, but inter-nanosheet junctions can limit network performance. This work uses liquid-liquid interface assembly to form densely tiled, highly aligned nanosheet networks of graphene, MoS2, and silver nanosheets. The resulting networks exhibit reduced junction resistance relative to nanosheet resistance, with graphene networks reaching high conductivity, MoS₂ networks reaching record mobility at low thickness, and Ag nanosheet networks approaching bulk-silver-like conductivity at sub-100 nm thickness.Read more
Electrochemically exfoliated graphene nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalCStudied MaterialExpand
Electrochemically exfoliated MoS₂ nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Colloidal silver nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalAgStudied MaterialExpand
Liquid-liquid interface assembled graphene network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalCStudied MaterialExpand
Liquid-liquid interface assembled MoS₂ network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Liquid-liquid interface assembled silver nanosheet network film with low thickness and aligned nanosheet packing.3 characterizations2 properties1 figureExperimentalAgStudied MaterialExpand
Research paperExperimental CharacterizationProduction of Ultra-Thin and High-Quality Nanosheet Networks via Layer-by-Layer Assembly at Liquid-Liquid InterfacesJoseph Neilson, Eoin Caffrey, Oran Cassidy, Cian Gabbett et al.2024·10.48550/arxiv.2410.16952·arXiv:2410.16952AbstractSolution-processable 2D materials are promising candidates for printed electronics, but inter-nanosheet junctions can limit network performance. This work uses liquid-liquid interface assembly to form densely tiled, highly aligned nanosheet networks of graphene, MoS2, and silver nanosheets. The resulting networks exhibit reduced junction resistance relative to nanosheet resistance, with graphene networks reaching high conductivity, MoS₂ networks reaching record mobility at low thickness, and Ag nanosheet networks approaching bulk-silver-like conductivity at sub-100 nm thickness.Read more
Electrochemically exfoliated graphene nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalCStudied MaterialExpand
Electrochemically exfoliated MoS₂ nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Colloidal silver nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalAgStudied MaterialExpand
Liquid-liquid interface assembled graphene network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalCStudied MaterialExpand
Liquid-liquid interface assembled MoS₂ network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Liquid-liquid interface assembled silver nanosheet network film with low thickness and aligned nanosheet packing.3 characterizations2 properties1 figureExperimentalAgStudied MaterialExpand
Research paperExperimental CharacterizationProduction of Ultra-Thin and High-Quality Nanosheet Networks via Layer-by-Layer Assembly at Liquid-Liquid InterfacesJoseph Neilson, Eoin Caffrey, Oran Cassidy, Cian Gabbett et al.2024·10.48550/arxiv.2410.16952·arXiv:2410.16952AbstractSolution-processable 2D materials are promising candidates for printed electronics, but inter-nanosheet junctions can limit network performance. This work uses liquid-liquid interface assembly to form densely tiled, highly aligned nanosheet networks of graphene, MoS2, and silver nanosheets. The resulting networks exhibit reduced junction resistance relative to nanosheet resistance, with graphene networks reaching high conductivity, MoS₂ networks reaching record mobility at low thickness, and Ag nanosheet networks approaching bulk-silver-like conductivity at sub-100 nm thickness.Read more
Electrochemically exfoliated graphene nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalCStudied MaterialExpand
Electrochemically exfoliated MoS₂ nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Colloidal silver nanosheets dispersed as an isopropyl-based ink and drop-cast for AFM dimension analysis.1 characterization3 properties1 figureExperimentalAgStudied MaterialExpand
Liquid-liquid interface assembled graphene network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalCStudied MaterialExpand
Liquid-liquid interface assembled MoS₂ network film with low thickness and aligned nanosheet packing.3 characterizations3 properties1 figureExperimentalMoS₂Studied MaterialExpand
Liquid-liquid interface assembled silver nanosheet network film with low thickness and aligned nanosheet packing.3 characterizations2 properties1 figureExperimentalAgStudied MaterialExpand