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Effect of Edge-Chemistry on Graphene-Based Hybrid Electrode Materials for Energy Storage Device
Hyo-Young Kim, Ji-Woo Park, Seo Jeong Yoon, In-Yup Jeon, Young-Wan Ju
J. Electrochem. Sci. Technol. 2023;14(1):31-37.   Published online November 21, 2022

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Effect of Edge-Chemistry on Graphene-Based Hybrid Electrode Materials for Energy Storage Device
Journal of Electrochemical Science and Technology. 2023;14(1):31-37   Crossref logo
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High-Performance Graphene Foam/Fe3O4 Hybrid Electrode for Lithium Ion Battery
Springer Theses. 2017;51-63   Crossref logo

Electrode and symmetric supercapacitor device performance of boron‐incorporated reduced graphene oxide synthesized by electrochemical exfoliation
Energy Storage. 2020;2(4):   Crossref logo
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Graphene decorated LiMn 2 O 4 electrode material for hybrid type energy storage devices
Energy Storage. 2022;5(2):   Crossref logo
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Graphene-Based Nanolayers Toward Energy Storage Device
Nanolayer Research. 2017;353-389   Crossref logo
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Cobalt based Metal Organic Framework/Graphene nanocomposite as high performance battery-type electrode materials for asymmetric Supercapacitors
Journal of Energy Storage. 2021;33:101925   Crossref logo
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Carbon nanotubes, graphene, porous carbon, and hybrid carbon-based materials: synthesis, properties, and functionalization for efficient energy storage
Carbon Based Nanomaterials for Advanced Thermal and Electrochemical Energy Storage and Conversion. 2019;1-24   Crossref logo
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A highly stable solid-state supercapacitor device based on robust layer-by-layer electrodeposited poly-(3, 4-ethylenedioxythiophene)-reduced graphene oxide–molybdenum disulfide nanocomposite electrode
Journal of Energy Storage. 2022;56:105926   Crossref logo
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Graphene-based electrode materials for lithium-ion batteries: Energy storage properties and prospects
Carbon. 2011;49(8):2878   Crossref logo
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Recent advancements of metal oxides/Nitrogen-doped graphene nanocomposites for supercapacitor electrode materials
Journal of Energy Storage. 2020;30:101486   Crossref logo
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