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Lithium-Sulfur Batteries: Advances and Trends

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Lithium-Sulfur Batteries: Advances and Trends ( lithium-sulfur-batteries-advances-and-trends )

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Electrochem 2020, 1 Entry 42 43 44 45 46 47 48 49 50 51 52 231 Battery Attributes CoMn2O4 microspheres as sulfur hosts in the cathode Lithium sulfide in a three-dimensional mesoporous carbon architecture Hollow spheres of titanium oxide and titanium nitride ZIF-67 fiber material (conjunction with cobalt nanoparticles and dicyandiamides) ZIF-67 framework (Li2S6 containing catholyte current collector) (high sulfur loading of 4.74 mg/cm−2) (sulfur loading 7.11 mg/cm−2) Co3S4/MnS nanotubes(sulfur loading of 3.2 g cm−2) Ni3S2 fabricated into a N/S-doped reduced graphene oxide One hollow architecture comprising a combination of zinc sulfide and iron sulfide encapsulated in a nitrogen doped carbon structure MnS-nanofiber interlayer(sulfur loading of 2 mg cm−2) Ruthenium-Mo4P3 nanoparticles on carbon nanospheres (high sulfur loading of up to 6.6 mg cm−2) Ni2Co4P3 species (sulfur loading of 25 mg cm−2) Table 1. Cont. Coulombic Efficiency (%) - - 99 95 77 After How Many Cycles? - - 400 500 100 300 200 1000 200 400 100 50 Discharge Capacity (mAh g−1) 524.3 848 410 1254 867.44 1166 938 910 4 0.2 822 1 714 [83] 0.5 894 0.5 1178 [84] 4 660 0.1 1223 [85] Charge Density (C) - 0.1 2 - 0.1 0.2 3 - 1158.6 Ref. [52] [52] [52] [76] [77] [78,79] [80] 718 [81,82]

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