Guo Guilue, Yao Xin, Ang Huixiang, Tan Huiteng, Zhang Yu, Guo Yuanyuan, Fong Eileen, Yan Qingyu
School of Materials Science and Engineering, Nanyang Technological University, 639798, Singapore.
Nanotechnology. 2016 Jan 29;27(4):045401. doi: 10.1088/0957-4484/27/4/045401. Epub 2015 Dec 11.
Transition metal-nitrogen/carbon (M-N/C, M = Fe, Co) catalysts are synthesized using environmentally friendly histidine-tag-rich elastin protein beads, metal sulfate and water soluble carbon nanotubes followed by post-annealing and acid leaching processes. The obtained catalysts are used as cathode materials in lithium-O2 batteries. It has been discovered that during discharge, Li2O2 nanoparticles first nucleate and grow around the bead-decorated CNT regions (M-N/C centres) and coat on the catalysts at a high degree of discharge. The Fe-N/C catalyst-based cathodes deliver a capacity of 12,441 mAh g(-1) at a current density of 100 mA g(-1). When they were cycled at a limited capacity of 800 mAh g(-1) at current densities of 200 or 400 mA g(-1), these cathodes showed stable charge voltages of ∼3.65 or 3.90 V, corresponding to energy efficiencies of ∼71.2 or 65.1%, respectively. These results are considerably superior to those of the cathodes based on bare annealed CNTs, which prove that the Fe-N/C catalysts developed here are promising for use in non-aqueous lithium-O2 battery cathodes.
采用富含组氨酸标签的环境友好型弹性蛋白珠、金属硫酸盐和水溶性碳纳米管合成过渡金属 - 氮/碳(M - N/C,M = Fe、Co)催化剂,随后进行退火和酸浸工艺。所得催化剂用作锂 - 氧电池的阴极材料。研究发现,在放电过程中,Li2O2纳米颗粒首先在珠状修饰的碳纳米管区域(M - N/C中心)成核并生长,并在高放电程度下覆盖在催化剂上。基于Fe - N/C催化剂的阴极在100 mA g(-1)的电流密度下提供12441 mAh g(-1)的容量。当它们在200或400 mA g(-1)的电流密度下以800 mAh g(-1)的有限容量循环时,这些阴极显示出稳定的充电电压,分别约为3.65或3.90 V,对应的能量效率分别约为71.2%或65.1%。这些结果明显优于基于裸退火碳纳米管的阴极,这证明此处开发的Fe - N/C催化剂有望用于非水锂 - 氧电池阴极。