Yu Linghui, Cai Dandan, Wang Haihui, Titirici Maria-Magdalena
Max-Planck Institute for Colloids and Interfaces, Am Muehlenberg 1, Golm/Potsdam 14424, Germany.
School of Chemistry and Chemical Engineering, South China University of Technology, Wushan Road 381, Guangzhou 510640, China.
Nanomaterials (Basel). 2013 Jul 22;3(3):443-452. doi: 10.3390/nano3030443.
This paper reports an "all in one" procedure to produce mesoporous, micro-spherical LiFePO₄ composed of agglomerated crystalline nanoparticles. Each nanoparticle is individually coated with a thin glucose-derived carbon layer. The main advantage of the as-synthesized materials is their good performance at high charge-discharge rates. The nanoparticles and the mesoporosity guarantee a short bulk diffusion distance for both lithium ions and electrons, as well as additional active sites for the charge transfer reactions. At the same time, the thin interconnected carbon coating provides a conductive framework capable of delivering electrons to the nanostructured LiFePO₄.
本文报道了一种“一体化”方法来制备由团聚的结晶纳米颗粒组成的介孔微球形磷酸铁锂。每个纳米颗粒都单独包覆有一层由葡萄糖衍生的薄碳层。所合成材料的主要优点是它们在高充放电速率下具有良好的性能。纳米颗粒和介孔结构保证了锂离子和电子的短体扩散距离,以及电荷转移反应的额外活性位点。同时,薄的相互连接的碳涂层提供了一个能够将电子传递到纳米结构磷酸铁锂的导电框架。