Zhang Liping, Fu Ju, Zhang Chuhong
State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute, Sichuan University, Chengdu, 610065, China.
Nanoscale Res Lett. 2017 Dec;12(1):376. doi: 10.1186/s11671-017-2143-4. Epub 2017 May 30.
LiNiCoAlO/carbon nanotube (NCA/CNT) composite cathode materials are prepared by a facile mechanical grinding method, without damage to the crystal structure and morphology of the bulk. The NCA/CNT composite exhibits enhanced cycling and rate performance compared with pristine NCA. After 60 cycles at a current rate of 0.25 C, the reversible capacity of NCA/CNT composite cathode is 181 mAh/g with a discharge retention rate of 96%, considerably higher than the value of pristine NCA (153 mAh/g with a retention rate of 90%). At a high current rate of 5 C, it also can deliver a reversible capacity of 160 mAh/g, while only 140 mAh/g is maintained for the unmodified NCA. Highly electrical conductive CNTs rather than common inert insulating materials are for the first time employed as surface modifiers for NCA, which are dispersed homogenously on the surface of NCA particles, not only improving the electrical conductivity but also providing effective protection to the side reactions with liquid electrolyte of the battery.
通过简便的机械研磨法制备了LiNiCoAlO/碳纳米管(NCA/CNT)复合正极材料,且未破坏块体的晶体结构和形貌。与原始NCA相比,NCA/CNT复合材料表现出增强的循环性能和倍率性能。在0.25 C的电流倍率下循环60次后,NCA/CNT复合正极的可逆容量为181 mAh/g,放电保持率为96%,大大高于原始NCA的值(153 mAh/g,保持率为90%)。在5 C的高电流倍率下,它也能提供160 mAh/g的可逆容量,而未改性的NCA仅保持140 mAh/g。首次使用高导电性的碳纳米管而非普通的惰性绝缘材料作为NCA的表面改性剂,其均匀分散在NCA颗粒表面,不仅提高了电导率,还为电池与液体电解质的副反应提供了有效的保护。