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Enhancement of electrochemical performance of lithium manganese oxide with graphene for aqueous supercapabattery
Journal article   Peer reviewed

Enhancement of electrochemical performance of lithium manganese oxide with graphene for aqueous supercapabattery

J.R. Low, H.N. Lim, I. Ibrahim, Z. Zainal, C.Y. Foo, N.M. Huang and Z.T. Jiang
Materials letters, Vol.349, 134838
2023

Abstract

Energy Storage Graphene Hydrothermal Lithium Manganese Oxide Nanoparticles Supercapabattery
In this study, we synthesized lithium manganese oxide nanoparticles/graphene nanoplatelets (LMO/GNPs) as the cathode material for a supercapabattery using a hydrothermal method. The addition of GNPs resulted in a 63% and 68% increase in specific capacitance and capacity compared to LMO alone, attributed to the enhanced conductivity and efficient lithium-ion diffusion of GNPs. The LMO/GNPs exhibited excellent rate capability and stability, with 80% capacity retention after 1000 cycles, an energy density of 39.07 Wh kg−1 and a power density of 925.40 W kg−11, showcasing their potential for supercapabattery applications. These findings highlight the superior performance of LMO/GNPs in the supercapabattery, making it a promising energy storage solution. (Display Omitted)

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
2 Chemistry
2.62 Electrochemistry
2.62.52 Electrode Materials
Web Of Science research areas
Materials Science, Multidisciplinary
Physics, Applied
ESI research areas
Materials Science
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