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Influence of Ti4+ on the Electrochemical Performance of Li-Rich Layered Oxides - High Power and Long Cycle Life of Li2Ru1-xTixO3 Cathodes

机译:Ti4 +对富Li层状氧化物电化学性能的影响-Li2Ru1-xTixO3阴极的高功率和长循环寿命

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摘要

Li-rich layered oxides are the most attractive cathodes for lithium-ion batteries due to their high capacity (>250 mAh g(-1)). However, their application in electric vehicles is hampered by low power density and poor cycle life. To address these, layered Li2Ru0.75Ti0.25O3 (LRTO) was synthesized and the influence of electroinactive Ti4+ on the electrochemical performance of Li2RuO3 was investigated. LRTO exhibited a reversible capacity of 240 mAh g(-1) under 14.3 mA g(-1) with 0.11 mol of Li loss after 100 cycles compared to 0.22 mol of Li for Li(2)Ru(0.75)Sn(0.2)5O(3). More Li+ can be extracted from LRTO (0.96 mol of Li) even after 250 cycles at 143 mA g(-1) than Li2RuO3 (0.79 mol of Li). High reversible Li extraction and long cycle life were attributed to structural stability of the LiM2 layer in the presence of Ti4+, facilitating the lithium diffusion kinetics. The versatility of the Li2MO3 structure may initiate exploration of Ti-based Li-rich layered oxides for vehicular applications.
机译:富含锂的分层氧化物由于其高容量(> 250 mAh g(-1))是锂离子电池最吸引人的阴极。然而,它们在电动汽车中的应用受到低功率密度和较差的循环寿命的阻碍。为了解决这些问题,合成了层状Li2Ru0.75Ti0.25O3(LRTO),并研究了电惰性Ti4 +对Li2RuO3电化学性能的影响。 LRTO在14.3 mA g(-1)下表现出240 mAh g(-1)的可逆容量,在100个循环后具有0.11 mol的Li损失,而Li(2)Ru(0.75)Sn(0.2)5O的Li2为0.22 mol (3)。即使在143 mA g(-1)下250次循环后,也可以从LRTO(0.96摩尔的Li)中提取更多的Li +。高可逆的锂萃取率和长的循环寿命归因于存在Ti4 +时LiM2层的结构稳定性,从而促进了锂的扩散动力学。 Li 2 MO 3结构的多功能性可能会引发对用于车辆应用的Ti基富锂层状氧化物的探索。

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