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With the Pb doping content at Sr-site increasing, a series of Sr1-xPbxLi2Ti6O14 (x=0, 0.25, 0.50, 0.75, 1.0) are synthesized by a simple solid-state reaction. It is found that the reversible capacity and rate capability experience a parabolic course from SrLi2Ti6O14 to PbLi2Ti6O14. Among all the as-prepared samples, Sr0.5Pb0.5Li2Ti6O14 shows the best cycling and rate properties. It delivers an initial...
Via Sr-site substitution, a series of Sr0.95M0.05Li2Ti6O14 (Mz+ = Na+, Cu2+, In3+) are prepared as anode materials for lithium-ion batteries. It is found that the introduction of Na+, Cu2+ or In3+ into the crystal lattice can reduce the charge-transfer resistance and improve the lithium-ion diffusion coefficient of SrLi2Ti6O14. Especially for In3+-doping, it exhibits more obvious effect on these improvements...
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