JOURNAL ARTICLE

Enhancing Lithium-Ion Battery Performance of Silicon Microparticle-Embedded Wrinkled Multilayered Graphene Structures for High Areal Capacity

Seongchan LeeIncheol HeoMin KangWon Cheol YooJae-Seong Kim

Year: 2024 Journal:   ECS Meeting Abstracts Vol: MA2024-02 (5)Pages: 633-633   Publisher: Institute of Physics

Abstract

Even nanostructured Si electrodes have demonstrated stable electrochemical performances in lithium-ion batteries (LIBs), complex process and high-cost of nanostructured Si electrodes are far from industry standards. Thus, utilization of commercially available low-cost Si microparticles with high-performance is highly necessary for high-energy-density LIBs. In this presentation, we demonstrate a simple and scalable method to utilize commercially available Si microparticles ( ca. 7 μm) with wrinkled-multilayered-graphenes (Si-WMGs) for high-areal-capacity LIBs. The WMGs provide not only mechanical flexibility for mitigating large volume change of Si microparticles during deep charge/discharge processes, but also good adhesion property to effectively coalesce Si microparticles, and high electrical conductivity, resulting in binder- and conductor-free thick electrodes. The Si-WMG electrodes showed high initial areal capacities of 12.5 mAh cm -2 at 0.1 C and 7.1 mAh cm -2 even at a very high rate of 2 C, with outstanding long-term stability with 5.3 mAh cm -2 at 2 C for over 240 cycles. Furthermore, a full cell composed of Si-WMG and lithium cobalt oxide presented 3.13 mAh cm -2 and a stable cycling performance (90.3% retention after 100 cycles) in a practical cell setting, clearly demonstrating the practical applicability of Si-WMG electrodes. Therefore, the WMG as a binder and conductor could be applicable to other electrodes with a large volume change and high mass-loading for high-areal-capacity LIBs.

Keywords:
Graphene Microparticle Materials science Silicon Lithium (medication) Lithium-ion battery Battery (electricity) Nanotechnology Ion Chemical engineering Optoelectronics Chemistry Engineering

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Interconnection Networks and Systems
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Supercapacitor Materials and Fabrication
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Advancements in Battery Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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