Yang Shuai, Liang Qimei, Wu Hao, Pi Jiacheng, Wang Zilin, Luo Yuxu, Liu Ying, Long Zhangwen, Zhou Dacheng, Wen Yugeng, Wang Qi, Guo Junming, Qiu Jianbei
Faculty of Material Science and Engineering, Kunming University of Science and Technology, Kunming 650093, P. R. China.
Key Lab Comprehens Utilizat Mineral Resources Eth, Yunnan Minzu University, Kunming 650500, P. R.China.
J Phys Chem Lett. 2022 Jun 9;13(22):4981-4987. doi: 10.1021/acs.jpclett.2c01052. Epub 2022 Jun 1.
Halide perovskite materials have been used in the field of lithium-ion batteries because of their excellent ion migration characteristics and defect tolerance. However, the current lead-based perovskites used for lithium-ion batteries are highly toxic, which may hinder the pace of further commercialization. Therefore, it is still necessary to develop a new type of stable and pollution-free perovskite anode material. Herein, we for the first time use a high-concentration lithium-ion doped rare-earth-based double perovskite CsNaErCl:Li as the negative electrode material for a lithium-ion battery. Thanks to its excellent structure stability, the assembled battery also has high cycle stability, with a specific capacity of 120 mAh g at 300 mA g after 500 cycles with a Coulomb efficiency of nearly 100%. The introduction of a rare earth element in a lead-free double perovskite paves a new way for the development of novel promising anode materials in the field of lithium storage applications.
卤化物钙钛矿材料因其优异的离子迁移特性和缺陷容忍度而被应用于锂离子电池领域。然而,目前用于锂离子电池的铅基钙钛矿毒性很强,这可能会阻碍进一步商业化的步伐。因此,开发一种新型的稳定且无污染的钙钛矿负极材料仍然很有必要。在此,我们首次使用高浓度锂离子掺杂的稀土基双钙钛矿CsNaErCl:Li作为锂离子电池的负极材料。由于其优异的结构稳定性,组装的电池也具有高循环稳定性,在300 mA g的电流密度下循环500次后比容量为120 mAh g,库仑效率接近100%。在无铅双钙钛矿中引入稀土元素为储锂应用领域新型有前景的负极材料的开发铺平了一条新道路。