Shenzhen Key Laboratory of Advanced Energy Storage, Southern University of Science and Technology, Shenzhen, 518055, China.
Department of Mechanical and Energy Engineering, Southern University of Science and Technology, Shenzhen, 518055, China.
Nat Commun. 2023 Jul 14;14(1):4205. doi: 10.1038/s41467-023-39947-8.
Metallic zinc anodes of aqueous zinc ion batteries suffer from severe dendrite and side reaction issues, resulting in poor cycling stability, especially at high rates and capacities. Herein, we develop two three-dimensional hierarchical graphene matrices consisting of nitrogen-doped graphene nanofibers clusters anchored on vertical graphene arrays of modified multichannel carbon. The graphene matrix with radial direction carbon channels possesses high surface area and porosity, which effectively minimizes the surface local current density, manipulates the Zn ions concentration gradient, and homogenizes the electric field distribution to regulate Zn deposition. As a result, the engineered matrices achieve a superior coulombic efficiency of 99.67% over 3000 cycles at 120 mA cm, the symmetric cells with the composite zinc anode demonstrates 2600 h dendrite-free cycles at 80 mA cm and 80 mAh cm. The as-designed full cell exhibits an inspiring capacity of 16.91 mAh cm. The Zn capacitor matched with activated carbon shows a superior long-term cycle performance of 20000 cycles at 40 mA cm. This strategy of constructing a 3D hierarchical structure for Zn anodes may open up a new avenue for metal anodes operating under high rates and capacities.
水系锌离子电池的金属锌阳极存在严重的枝晶和副反应问题,导致循环稳定性差,特别是在高倍率和高容量下。在此,我们开发了两种由氮掺杂石墨烯纳米纤维簇锚定在改性多通道碳的垂直石墨烯阵列上的三维分层石墨烯基质。具有径向碳通道的石墨烯基质具有高的比表面积和孔隙率,可有效降低表面局部电流密度,控制 Zn 离子浓度梯度,均匀电场分布,从而调节 Zn 沉积。结果,所设计的基质在 120 mA cm 下经过 3000 次循环后实现了 99.67%的超高库仑效率,具有复合锌阳极的对称电池在 80 mA cm 和 80 mAh cm 下实现了 2600 小时无枝晶循环。所设计的全电池表现出令人鼓舞的容量为 16.91 mAh cm。与活性炭匹配的 Zn 电容器表现出在 40 mA cm 下 20000 次循环的优异长循环性能。这种构建 Zn 阳极 3D 分层结构的策略为高倍率和高容量下的金属阳极开辟了一条新途径。