Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6606841 | Electrochimica Acta | 2016 | 7 Pages |
Abstract
Traditional Li-ion batteries are encountering a technical hurdle in further increasing their energy density. Li-S batteries have been attracted increasing attention owing to the high theoretical capacity of element sulfur (S, 1672 mAh gâ1). Nevertheless, the insulation nature of the S element and polysulfide shuttle effect, resulting in low S utilization and poor cycling stability, are the main obstacles to widespread practical utilization of Li-S batteries. To tackle these issues, a well-designed hybrid cathode, consisted of S-infused activated carbon fiber (ACF) cloth and a thin TiO2 wrapping layer (TiO2-ACF/S), is developed in this work with the TiO2 wrapping layer as a polysulfide chemisorption layer, while the ACF cloth being a conductive network. Compared to the pure S and ACF/S cathodes, the TiO2-ACF/S hybrid cathode, with a high S loading of about 3.0 mg cmâ2, displays an improved initial specific capacity (915 mAh gâ1 at 0.2C), cycle stability (capacity retention of 77% after 100 cycles, 702 mAh gâ1), and rate ability (438 mAh gâ1 at 5C). The enhanced electrochemical performances of TiO2-ACF/S hybrid cathode are attributed to the synergistic effects from TiO2 (polysulfide chemisorption material), ACF (electronically conductive material) and S (high hosting capacity of Li ions).
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Keyu Xie, Kun Zhang, Yunzhao Han, Kai Yuan, Qiang Song, Jian-gan Wang, Chao Shen, Xingrui Liu, Bingqing Wei,