Choi Seung Ho, Kang Yun Chan
Department of Materials Science and Engineering, Korea University, Anam-Dong, Seongbuk-Gu, Seoul 136-713, Republic of Korea.
Nanoscale. 2015 Apr 14;7(14):6230-7. doi: 10.1039/c5nr00012b.
The electrochemical properties of binary transition metal sulfide-reduced graphene oxide (RGO) composite powders, relevant for their performance as anode materials in sodium ion batteries, were firstly studied. (Ni,Co)O-RGO composite powders prepared by spray pyrolysis are transformed into Ni3Co6S8-RGO composite powders by a simple sulfidation process. Plate-shape nanocrystals of nickel-cobalt sulfide (Ni3Co6S8) are uniformly distributed over the crumpled RGO structure. The discharge capacities of the Ni3Co6S8-RGO composite powders for 2(nd) and 100(th) cycles at a current density of 0.5 A g(-1) are 504 and 498 mA h g(-1), respectively. However, the discharge capacities of the bare Ni3Co6S8 powders for 2(nd) and 100(th) cycles are 522 and 125 mA h g(-1), respectively. The NiO-Co3O4 and (Ni,Co)O-RGO composite powders prepared by spray pyrolysis also show low discharge capacities of 122 and 119 mA h g(-1), respectively, after 100 cycles. The high structural stability of the Ni3Co6S8-RGO composite powders during repeated sodium ion intercalation/deintercalation processes results in excellent cycling and rate performances for Na(+) storage.
首次研究了二元过渡金属硫化物-还原氧化石墨烯(RGO)复合粉末作为钠离子电池负极材料的相关电化学性能。通过喷雾热解制备的(Ni,Co)O-RGO复合粉末经简单硫化过程转化为Ni3Co6S8-RGO复合粉末。硫化镍钴(Ni3Co6S8)的板状纳米晶体均匀分布在皱缩的RGO结构上。在电流密度为0.5 A g(-1)时,Ni3Co6S8-RGO复合粉末第2次和第100次循环的放电容量分别为504和498 mA h g(-1)。然而,纯Ni3Co6S8粉末第2次和第100次循环的放电容量分别为522和125 mA h g(-)。通过喷雾热解制备的NiO-Co3O4和(Ni,Co)O-RGO复合粉末在100次循环后放电容量也较低,分别为122和119 mA h g(-1)。Ni3Co6S8-RGO复合粉末在重复的钠离子嵌入/脱嵌过程中具有高结构稳定性,从而具有优异的循环和倍率性能用于储钠。