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. 2020 Dec 8;10(71):43811–43824. doi: 10.1039/d0ra07733j

Comparison of the capacity and cycle performance of TiO2 and graphene-based anode materials in LIBs.

Materials Year Specific capacity (mA h g−1) Current density (mA g−1) Cycle number Ref.
TiO2(B)/N-doped graphene 2020 347.6 5400 (10C) 1000 This work
184.4 10 800 (20C) 3000
146.2 27 000 (50C) 7000
TiO2(B) nanowires 2019 180 100 (0.6C) 150 85
70 10 000 (60C) 10 000
TiO2(B) hierarchical tubular structure 2015 160 5C 400 86
TiO2(B) nanosheet/rGO 2014 230 1C 1000 87
175 20C 1000
TiO2(B) nanowires/N-doped graphene 2015 220.7 10C 1000 88
Flower-liked TiO2(B)/Graphene 2018 171 5C 100 89
TiO2(B) nanosheet/N-doped graphene 2017 326.4 0.6C 100 90
TiO2/rGO 2017 79 3400 (20C) 100 91
TiO2 nanorods/rGO 2019 353.6 100 100 92
TiO2/rGO 2017 182 500 2000 93
TiO2 nanotube/Graphene 2013 150 4000 50 94
80 8000 2000
N-doped TiO2 nanotube/N-doped graphene 2014 169 1000 (6C) 95
80 5000 (30C)
Petal-like TiO2 nanosheets 2014 180 400 96
TiO2 microparticles/rGO 2020 143 1C 100 97
Mesoporous TiO2 spheres/graphene 2018 218 0.2C 100 98
Hollow TiO2−x porous microspheres 2016 151 190 (1C) 300 99
TiO2/rGO 2016 200 100 50 100