• Journal of Inorganic Materials
  • Vol. 35, Issue 6, 717 (2020)
Hao JIANG, Hao WU, Chengyi HOU, Yaogang LI, Ru XIAO, Qinghong ZHANG*, and Hongzhi WANG*
Author Affiliations
  • State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China
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    DOI: 10.15541/jim20190285 Cite this Article
    Hao JIANG, Hao WU, Chengyi HOU, Yaogang LI, Ru XIAO, Qinghong ZHANG, Hongzhi WANG. Sawing Angles on Property of Lithium-sulfur Battery Interlayer Prepared with Birch Derived Orientedly Microchannel Biochar[J]. Journal of Inorganic Materials, 2020, 35(6): 717 Copy Citation Text show less
    Schematic diagram of Li-S battery using biochar interlayer
    1. Schematic diagram of Li-S battery using biochar interlayer
    Cross-sectional and longitudinal (inserts) SEM images of the of biochar saw along varying angles: 0°(a), 30° (b), 45° (c), 60° (d), and 90° (e); SEM images of wood before (insert in (f)) and after (f) delignification; TEM (g) and HRTEM(h) images of biochar oriented at 45°
    2. Cross-sectional and longitudinal (inserts) SEM images of the of biochar saw along varying angles: 0°(a), 30° (b), 45° (c), 60° (d), and 90° (e); SEM images of wood before (insert in (f)) and after (f) delignification; TEM (g) and HRTEM(h) images of biochar oriented at 45°
    SEM image (a), corresponding C (b) and S (c) elements distribution mappings of biochar oriented at 45°, XPS spectra of biochar oriented at 45°, survey spectrum (d), C1s (e), and S2p (f)
    3. SEM image (a), corresponding C (b) and S (c) elements distribution mappings of biochar oriented at 45°, XPS spectra of biochar oriented at 45°, survey spectrum (d), C1s (e), and S2p (f)
    (a-c) N2 adsorption-desorption isotherms of the untreated birch (a), lignin-free birch (b), biochar sawing along 45°(c) and pore size distribution curve (insert in (c)) of biochar sawing along 45°; Raman spectrum (d) and XRD pattern (e) of biochar oriented at 45°
    4. (a-c) N2 adsorption-desorption isotherms of the untreated birch (a), lignin-free birch (b), biochar sawing along 45°(c) and pore size distribution curve (insert in (c)) of biochar sawing along 45°; Raman spectrum (d) and XRD pattern (e) of biochar oriented at 45°
    Cyclic voltammograms of battery B (a) and battery A-45° (b) between 1.7-2.6 V at 0.1 mV/s; (c) Cycling performances of batteries A with different cutting orientation biochar interlayers and battery B with insert showing the cycling performance of battery C; (d) Charging-discharging profiles of battery A-45° at 0.05C
    5. Cyclic voltammograms of battery B (a) and battery A-45° (b) between 1.7-2.6 V at 0.1 mV/s; (c) Cycling performances of batteries A with different cutting orientation biochar interlayers and battery B with insert showing the cycling performance of battery C; (d) Charging-discharging profiles of battery A-45° at 0.05C
    Hao JIANG, Hao WU, Chengyi HOU, Yaogang LI, Ru XIAO, Qinghong ZHANG, Hongzhi WANG. Sawing Angles on Property of Lithium-sulfur Battery Interlayer Prepared with Birch Derived Orientedly Microchannel Biochar[J]. Journal of Inorganic Materials, 2020, 35(6): 717
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