Yi Yuyang, Li Jiaqiang, Gao Zhixiao, Liu Wenfeng, Zhao Yu, Wang Menglei, Zhao Wen, Han Yu, Sun Jingyu, Zhang Jin
College of Energy, Soochow Institute for Energy and Materials InnovationS, Light Industry Institute of Electrochemical Power Sources, Key Laboratory of Advanced Carbon Materials and Wearable Energy Technologies of Jiangsu Province, Soochow University, Suzhou, 215006, P. R. China.
Advanced Membranes and Porous Materials Center, Physical Sciences and Engineering Division, King Abdullah University of Science and Technology, Thuwal, 23955-6900, Saudi Arabia.
Adv Mater. 2022 Jul;34(29):e2202685. doi: 10.1002/adma.202202685. Epub 2022 Jun 16.
Employing an Al foil current collector at the potassium anode side is an ideal choice to entail low-cost and high-energy potassium-metal batteries (PMBs). Nevertheless, the poor affinity between the potassium and the planar Al can cause uneven K plating/stripping and, hence, an undermined anode performance, which remains a significant challenge to be addressed. Herein, a nitrogen-doped carbon@graphdiyne (NC@GDY)-modified Al current collector affording potassiophilic properties is proposed, which simultaneously suppresses the dendrite growth and prolongs the lifespan of K anodes. The thin and light modification layer (7 µm thick, with a mass loading of 500 µg cm ) is fabricated by directly growing GDY nanosheets interspersed with Cu quantum dots on NC polyhedron templates. As a result, symmetric cell tests reveal that the K@NC@GDY-Al electrode exhibits an unprecedented cycle life of over 2400 h at a 40% depth of discharge. Even at an 80% depth of discharge, the cell can still sustain for 850 h. When paired with a potassium Prussian blue cathode, the thus-assembled full cell demonstrates comparable capacity and rate performance with state-of-the-art PMBs.
在钾阳极侧使用铝箔集流体是实现低成本、高能量钾金属电池(PMB)的理想选择。然而,钾与平面铝之间较差的亲和力会导致钾的不均匀镀覆/剥离,从而削弱阳极性能,这仍是一个有待解决的重大挑战。在此,提出了一种具有亲钾特性的氮掺杂碳@石墨炔(NC@GDY)修饰的铝集流体,它同时抑制了枝晶生长并延长了钾阳极的寿命。通过在NC多面体模板上直接生长穿插有铜量子点的GDY纳米片,制备了薄而轻的修饰层(厚度为7 µm,质量负载为500 µg cm)。结果,对称电池测试表明,K@NC@GDY-Al电极在40%放电深度下展现出超过2400小时的前所未有的循环寿命。即使在80%放电深度下,电池仍能持续850小时。当与钾普鲁士蓝阴极配对时,由此组装的全电池展现出与现有先进PMB相当的容量和倍率性能。