Enhanced performance of graphene-incorporated electrodes for solid-state lithium-sulfur batteries through facilitated ionic diffusion pathways

被引:2
作者
Kizilaslan, Abdulkadir [1 ,2 ,3 ]
Turk, Cagri Gokhan [4 ]
Miura, Akira [3 ]
Tadanaga, Kiyoharu [3 ]
机构
[1] Sakarya Univ, Met & Mat Sci Dept, Esentepe Campus, TR-54187 Sakarya, Turkiye
[2] Sakarya Univ, Res Dev & Applicat Ctr SARGEM, Esentepe Campus, TR-54187 Sakarya, Turkiye
[3] Hokkaido Univ, Fac Engn, N13W8, Sapporo 0608628, Japan
[4] Ontario Tech Univ, Fac Engn & Appl Sci, 2000 Simcoe St North, Oshawa, ON L1G 0C5, Canada
关键词
Solid-state batteries; Composite cathode; Energy storage; Graphene; 2D materials; ANODE MATERIAL; ELECTROLYTES; CONDUCTIVITY; BOROPHENE; MECHANISM; CRYSTAL; PLANE;
D O I
10.1016/j.cej.2024.153588
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Significant progress has been achieved in advancing all-solid-state lithium-sulfur batteries through the development of sulfide solid electrolytes. Nonetheless, a challenge lies in creating a percolated ion-electron conduction path with intimate contact between charge carriers throughout the cathode which is crucial for enhancing overall efficiency and addressing issues related to slow kinetics and impedance during battery operation. This study introduces a framework elucidating how the integration of graphene enhances electrode performance by refining ionic diffusion pathways. An idealized ionic diffusion pathway characterized by a continuous ionic network, facilitating minimum diffusion distances, is proposed. Through a parametric study substituting portions of ionic and electronic conductive agents with graphene, the impact on total ionic and electronic conductivity of positive electrodes was comprehended. The findings underscore the critical role of optimum graphene content, which fills the gaps between ionic conductive materials and creates the shortest diffusion paths for ions and electrons. While incorporating graphene into cathode electrodes is not novel, it is noteworthy that graphene, as a mixed ion-electron conductive material, significantly enhances ion mobility due to its 2D structure, addressing a crucial aspect of cathode performance. Upon achieving optimum composite formulation, empirical findings demonstrate substantial performance improvement, including a 17.7% increase in initial capacity and a remarkable 21% enhancement in capacity retention compared to electrodes without graphene.
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页数:10
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