Ge-doped 3D flower-like Cu2SnS3 structures for enhanced lithium-ion storage performance
No Thumbnail Available
Date
2025
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier Ltd
Abstract
Development of advanced anode materials with high capacity and stable cycling performance is crucial for next-generation lithium-ion batteries. In this work, we report Ge-doped three-dimensional flower-like Cu<inf>2</inf>SnS<inf>3</inf> (Ge-CSS) microstructures synthesized via a solvothermal route. The introduction of Ge into the Cu?SnS? lattice effectively enhances electrical conductivity and lithium-ion transport, leading to superior electrochemical properties. The Ge-CSS electrode delivers a high initial discharge capacity of 796 mAh/g at 0.1 A/g with improved cycling stability, retaining 354 mAh/g after 100 cycles, and exhibits excellent rate capability, maintaining 74.09 % capacity as the current density increases from 0.1 to 2 A/g. Moreover, the reduced charge transfer resistance compared to undoped Cu<inf>2</inf>SnS<inf>3</inf> highlights the beneficial role of Ge incorporation. These findings demonstrate the potential of Ge-CSS microstructures as a promising anode material for high-performance lithium-ion batteries. © 2025 Elsevier Ltd
Description
Keywords
Anode materials, Cesium compounds, Charge transfer, Charging (batteries), Copper compounds, Electric discharges, Electrochemical electrodes, Germanium compounds, Ions, IV-VI semiconductors, Microstructure, Sulfur compounds, Tin compounds, 3d flower-like, Anode material, Ge- cu2SnS3, Ge-doped, High capacity, High-capacity, Ion batteries, Lithium ion storages, Lithium ions, Storage performance, Anodes, Lithium-ion batteries
Citation
Journal of Energy Storage, 2025, 138, , pp. -
