| Literature DB >> 30284111 |
Fuxing Yin1, Jun Ren1, Yongguang Zhang2, Taizhe Tan3, Zhihong Chen4.
Abstract
To enhance the electrochemical performance of the lithium/sulfur batteries, a novel interlayer was prepared by coating the slurry of PPy/ZnO composite onto the surface of a separator. Owing to a three-dimensional hierarchical network structure, PPy/ZnO composite serves as a polysulfide diffusion absorbent that can intercept the migrating soluble polysulfides to enhance the electrochemical performance of the Li/S batteries. The specific capacity of the cell with PPy/ZnO interlayer remained at 579 mAh g-1 after 100 cycles at 0.2 C. This interlayer can provide novel avenues for the commercial applications of Li/S batteries.Entities:
Keywords: Electrochemical performance; Interlayer; Lithium/sulfur battery; PPy/ZnO composite
Year: 2018 PMID: 30284111 PMCID: PMC6170249 DOI: 10.1186/s11671-018-2724-x
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1A schematic of the cell with PPy/ZnO interlayer
Fig. 2a SEM image of PPy/ZnO composite. b–c TEM images of PPy/ZnO composite at different magnifications. d cross-sectional SEM image of PPy/ZnO composite-coated separator
Fig. 3a XRD patterns of the PPy and PPy/ZnO composite and b FTIR spectra of PPy and PPy/ZnO composite
Fig. 4CV profiles of cells with PPy/ZnO interlayer (a) and without PPy/ZnO interlayer (b)
Fig. 5Galvanostatic charge/discharge profiles of cells with PPy/ZnO interlayer (a), without PPy/ZnO interlayer (b) at 0.2 C; the cycling performance at 0.2 C (c) and rate performance (d) of cells with PPy/ZnO interlayer and without PPy/ZnO interlayer
Fig. 6a–b EIS plots of the cells with and without PPy/ZnO interlayer before cycle and after 50 cycles and c the equivalent circuit
Fig. 7XPS spectra of C 1 s (a), N 1 s (b), S 2p (c), and Zn2p (d)