Yang Puheng, Zhang Shichao, Wei Ziwei, Guan Xianggang, Xia Jun, Huang Danyang, Xing Yalan, He Jia, Wen Bohua, Liu Bin, Xu Huaizhe
School of Materials Science and Engineering, Beihang University, Beijing, 100191, China.
School of Physics Science and Nuclear Energy Engineering, Beihang University, Beijing, 100191, China.
Small. 2023 May;19(20):e2207797. doi: 10.1002/smll.202207797. Epub 2023 Feb 20.
Lithium-rich layered oxides (LLOs) are concerned as promising cathode materials for next-generation lithium-ion batteries due to their high reversible capacities (larger than 250 mA h g ). However, LLOs suffer from critical drawbacks, such as irreversible oxygen release, structural degradation, and poor reaction kinetics, which hinder their commercialization. Herein, the local electronic structure is tuned to improve the capacity energy density retention and rate performance of LLOs via gradient Ta doping. As a result, the capacity retention elevates from 73% to above 93%, and the energy density rises from 65% to above 87% for LLO with modification at 1 C after 200 cycles. Besides, the discharge capacity for the Ta doped LLO at 5 C is 155 mA h g , while it is only 122 mA h g for bare LLO. Theoretical calculations reveal that Ta doping can effectively increase oxygen vacancy formation energy, thus guaranteeing the structure stability during the electrochemical process, and the density of states results indicate that the electronic conductivity of the LLOs can be boosted significantly at the same time. This strategy of gradient doping provides a new avenue to improve the electrochemical performance of the LLOs by modulating the local structure at the surface.
富锂层状氧化物(LLOs)因其高可逆容量(大于250 mA h g)而被视为下一代锂离子电池有前景的正极材料。然而,LLOs存在严重缺点,如不可逆的氧释放、结构退化和较差的反应动力学,这些阻碍了它们的商业化。在此,通过梯度Ta掺杂来调整局部电子结构,以提高LLOs的容量能量密度保持率和倍率性能。结果,经过200次循环后,在1 C下改性的LLOs的容量保持率从73%提高到93%以上,能量密度从65%提高到87%以上。此外,Ta掺杂的LLOs在5 C下的放电容量为155 mA h g,而未掺杂的LLOs仅为122 mA h g。理论计算表明,Ta掺杂可有效提高氧空位形成能,从而保证电化学过程中的结构稳定性,态密度结果表明同时可显著提高LLOs的电子电导率。这种梯度掺杂策略为通过调节表面局部结构来改善LLOs的电化学性能提供了一条新途径。