| Literature DB >> 32210255 |
Limin Mao1, Fei Wang1, Jian Mao2.
Abstract
Lithium-sulfur (Entities:
Year: 2020 PMID: 32210255 PMCID: PMC7093555 DOI: 10.1038/s41598-020-62037-4
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic illustration showing the preparation ZnS/S, r-GO/S and ZnS/r-GO/S foams composites.
Figure 2SEM and TEM images of the samples. (a) ZnS (en)0.5, (b) mesoporous ZnS, the insert is TEM image of mesoporous ZnS. (c) HRTEM image of mesoporous ZnS, (d) SEM images of ZnS/r-GO, the insert is the cross section SEM of ZnS/r-GO. ZnS nanosheets were guided by red arrows, and r-GO was guided by yellow arrows. (e) SEM image of ZnS/r-GO/S. (f) the EDS mapping of (e).
Figure 3XRD patterns and TG curves of the samples. (a) XRD patterns of ZnS(en)0.5, ZnS, r-GO, ZnS/r-GO and ZnS/r-GO/S. (b) TG curves of ZnS/r-GO/S and r-GO.
Figure 4XPS spectra of the ZnS/r-GO and ZnS composite. (a) Wide spectrum of ZnS/r-GO. (b) C 1 s spectrum of ZnS/r-GO. (c,d) S 2p and Zn 2p spectra of ZnS/r-GO composite and ZnS nanosheets.
Figure 5Electrochemical performance of ZnS/r-GO/S, r-GO/S and ZnS/S electrodes. (a) Cycle performance at 0.1 C of ZnS/r-GO/S, r-GO/S and ZnS/S electrodes, respectively. (b,c) Galvanostatic charge/discharge profiles of ZnS/S and ZnS/r-GO/S cathode at 0.1 C. (d) CV curves of ZnS/r-GO/S electrode.
Figure 6Electrochemical performance and Polysulfides adsorption. (a) Long-term cycling performance of ZnS/r-GO/S at 1 C after activation in first three cycles at 0.1 C. (b) Rate capacity of ZnS/r-GO/S, (c) UV-vis spectra of the Li2S6 solution with blank, ZnS, r-GO and ZnS/r-GO. (Inset photograph of visualized adsorption of Li2S6 on ZnS, r-GO and ZnS/r-GO with same mass).