| Literature DB >> 27167615 |
Ying Liu1,2, Alessandro Palmieri1,2, Junkai He3,4, Yongtao Meng3,4, Nicole Beauregard1,2, Steven L Suib3,4, William E Mustain1,2,3.
Abstract
The increasing demand of emerging technologies for high energy density electrochemical storage has led many researchers to look for alternative anode materials to graphite. The most promising conversion and alloying materials do not yet possess acceptable cycle life or rate capability. In this work, we use tin oxide, SnO2, as a representative anode material to explore the influence of graphene incorporation and In-doping to increase the electronic conductivity and concomitantly improve capacity retention and cycle life. It was found that the incorporation of In into SnO2 reduces the charge transfer resistance during cycling, prolonging life. It is also hypothesized that the increased conductivity allows the tin oxide conversion and alloying reactions to both be reversible, leading to very high capacity near 1200 mAh/g. Finally, the electrodes show excellent rate capability with a capacity of over 200 mAh/g at 10C.Entities:
Year: 2016 PMID: 27167615 PMCID: PMC4863165 DOI: 10.1038/srep25860
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) Powder XRD pattern of ITO/RGO composite, XPS spectrum of ITO/RGO composite, (b) broad scan spectra, high resolution spectra of (c) Sn 3d and (d) In 3d.
Figure 2(a) SEM image of graphene. Low-magnification TEM image (b) and HRTEM images (c,d) of ITO/RGO.
Figure 3(a) Cyclic voltammograms of the ITO/graphene composite between 0.01 and 3 V vs. Li+/Li at a scan rate of 0.1 mV/s. (b) Galvanostatic charge/discharge profiles of the ITO/RGO cycled at 1st, 10th, 200th between 0.01 and 3 V (vs. Li+/Li) at 1C current density. (c) Cycling performance of ITO/RGO, SnO2/RGO, In2O3/RGO and RGO electrodes and Columbic efficiency of ITO/RGO electrode.
Figure 4Rate capability of the ITO/RGO electrode.
Figure 5The (a) Nyquist plots and (b) corresponding equivalent electrical circuit of the ITO/RGO and SnO2/RGO before and after 600 cycles, (i) ITO/RGO before, (ii) ITO/RGO after, (iii) SnO2/RGO before and (iv) SnO2/RGO after.
Impedance parameters (Ω) of anodes before and after 600 cycles.
| Anodes | R1 | R2+R3 |
|---|---|---|
| SnO2/RGO before | 11.21 | 27.47 |
| SnO2/RGO after | 10.96 | 44.4 |
| ITO/RGO before | 10.6 | 21.87 |
| ITO/RGO after | 11.1 | 21.71 |
Figure 6XPS spectrum of ITO/RGO composite after 600 cycles, (a) general spectra, high resolution spectra of (b) Sn 3d and (c) In 3d.