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Li4Ti5O12/graphene provides a superior rate capability.
Higher volumetric capacity and superior rate capability simultaneously are achieved.
Moreover, the Bi2WO6/graphene composites displayed superior rate capability.
Liu, H. et al. Mesoporous TiO2 B microspheres with superior rate performance for lithium ion batteries.
Notably, LTO600 exhibits superior rate performance and excellent cyclic stability.
As a result, the designed composite nanostructured electrodes demonstrated excellent cycle stability and superior rate capability.
Thus, the boron-doped composite shows superior rate capability and cycle stability than the undoped sample.
High reversible capacities, superior rate capability, and excellent stable ability are synchronously observed.
In addition, it shows superior rate capability and good capacity retention of 69.5% after 50 cycles.
Short Li-ion diffusion path and high diffusion coefficient lead to the superior rate capability.
Meanwhile, the MSCs possess superior rate capability, good mechanical stability, excellent flexibility and long cycle life.
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