Cheng Zishuang, Zhang Xiaoming, Zhang Hui, Gao Jianbo, Liu Heyan, Yu Xiao, Dai Xuefang, Liu Guodong, Chen Guifeng
State Key Laboratory of Reliability and Intelligence of Electrical Equipment, Hebei University of Technology, Tianjin 300130, China.
Centre of Excellence for Advanced Materials, Dongguan 523808, China.
Phys Chem Chem Phys. 2021 Mar 18;23(10):6278-6285. doi: 10.1039/d0cp06363k.
Recently, two-dimensional (2-D) materials with a Penta-atomic-configuration such as Penta-graphene have received considerable attention because of their potential applications in electronics, spintronics and ion batteries. Previously, Penta-graphene has been proposed as an excellent anode material for Li-/Na-ion batteries with a high theoretical capacity (1489 mA h g-1). Here, based on the first-principles calculations, we report that a new 2-D material namely Penta-B2C can become another excellent anode material with even higher theoretical capacity for Li-/Na-ion batteries than Penta-graphene. Our results demonstrate that Li/Na atoms can be stably adsorbed on Penta-B2C. Meanwhile, Penta-B2C shows metallic conductivity during the adsorption. Most strikingly, the theoretical capacities of Penta-B2C are as high as 1594 for Li and 2391 mA h g-1 for Na, which are superior to those of the most known 2-D anode materials. Especially, the Na theoretical capacity of Penta-B2C sets a new record among known 2-D anode materials. In addition, Penta-B2C possesses relatively low open-circuit voltage and a low diffusion barrier for ions, which are vital for anode materials. These results highly promise that Penta-B2C can be an excellent anode material with a fast charge/discharge rate and extremely high theoretical capacity for Li-/Na-ion batteries.
最近,具有五原子构型的二维(2-D)材料,如五边形石墨烯,因其在电子学、自旋电子学和离子电池中的潜在应用而受到了广泛关注。此前,五边形石墨烯已被提议作为一种具有高理论容量(1489 mA h g-1)的锂/钠离子电池的优异负极材料。在此,基于第一性原理计算,我们报道了一种新的二维材料——五边形B2C,它可以成为另一种优异的负极材料,用于锂/钠离子电池,其理论容量甚至比五边形石墨烯更高。我们的结果表明,锂/钠原子可以稳定地吸附在五边形B2C上。同时,五边形B2C在吸附过程中表现出金属导电性。最引人注目的是,五边形B2C的锂理论容量高达1594,钠理论容量为2391 mA h g-1,优于大多数已知的二维负极材料。特别是,五边形B2C的钠理论容量在已知的二维负极材料中创下了新纪录。此外,五边形B2C具有相对较低的开路电压和较低的离子扩散势垒,这对负极材料来说至关重要。这些结果充分表明,五边形B2C可以成为一种具有快速充放电速率和极高理论容量的锂/钠离子电池优异负极材料。