Wang Haidong, Wu Qiong, Wang Yunong, Lv Xiaoling, Wang Heng-Guo
Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education and Faculty of Chemistry, Northeast Normal University, 5628 Renmin Street, Changchun 130024, PR China.
School of Materials Science and Engineering, Changchun University of Science and Technology, 7989 Weixing Road, Changchun 130022, PR China.
J Colloid Interface Sci. 2022 Jan 15;606(Pt 2):1024-1030. doi: 10.1016/j.jcis.2021.08.113. Epub 2021 Aug 20.
Currently, there is considerable interest in developing new electrode materials to construct the new-generation dual-ion batteries (DIBs) with the potential advantages of higher working voltage, good safety, low cost, and environmental friendliness. Herein, a well-known charge-transfer metal-organic compound, copper-tetracyanoquinodimethane (CuTCNQ), is synthesized and then used as an anode material, which can reversibly store Li/Na ions under the lower working voltage. Consequently, the lithium/sodium-based DIBs (LDIBs/SDIBs) are constructed by coupling CuTCNQ anode with graphite cathode and their working mechanisms are also understood in detail. As expected, LDIBs exhibit a high average potential of 4.26 V, a high initial discharge capacity of 195.4 mAh g at 0.1 A g, long cycling performance after 200 cycles with good capacity retention and excellent rate capability of 106.2 mAh g at 5 A g. Especially, high average potential of 4.23 V and good rate capability of 34.5 mAh g at 5 A g could be maintained in SDIBs. These results may open a new avenue for using metal-organic compound in the field of high-performance energy-storage devices.
目前,人们对开发新型电极材料以构建具有更高工作电压、良好安全性、低成本和环境友好等潜在优势的新一代双离子电池(DIBs)有着浓厚兴趣。在此,合成了一种著名的电荷转移金属有机化合物——四氰基对苯二醌二甲烷铜(CuTCNQ),并将其用作阳极材料,该材料能够在较低工作电压下可逆地存储锂/钠离子。因此,通过将CuTCNQ阳极与石墨阴极耦合构建了锂/钠基双离子电池(LDIBs/SDIBs),并详细了解了它们的工作机制。正如预期的那样,LDIBs表现出4.26 V的高平均电位,在0.1 A g下具有195.4 mAh g的高初始放电容量,在200次循环后具有长循环性能,容量保持良好,在5 A g下具有106.2 mAh g的优异倍率性能。特别是,SDIBs能够保持4.23 V的高平均电位以及在5 A g下34.5 mAh g的良好倍率性能。这些结果可能为在高性能储能器件领域使用金属有机化合物开辟一条新途径。