Gao Lin, Liu Rujun, Hu Hao, Li Guojian, Yu Ying
Institute of Nanoscience and Nanotechnology, College of Physical Science and Technology, Central China Normal University, People's Republic of China.
Nanotechnology. 2014 May 2;25(17):175402. doi: 10.1088/0957-4484/25/17/175402. Epub 2014 Apr 10.
Li4Ti5O12/rutile TiO2 (LTO-RT) composites with Li/Ti molar ratios of 3:5, 4:5 and 4.5:5 have been successfully synthesized with TiO2 microspheres as a precursor. Furthermore, C-coated LTO-RT mesoporous microspheres with a molar ratio of 4:5 (C/4-5-LTO-RT) have been prepared based on the LTO-RT composite through a hydrothermal method and high temperature calcination. After various characterizations, it is found that carbon plays a pivotal role in retaining the porous nanostructure of the original as-prepared TiO2 precursor in the overall process. Substantially, C/4-5-LTO-RT still shows a high specific surface area of 63.70 m(2) g(-1) even after high temperature treatment at 800 °C. Since the porous nanostructure offers open and direct channels for the diffusion of Li ions and electrons and carbon decoration also efficiently improves the electrical conductivity, the sample of C/4-5-LTO-RT shows an enhanced electrochemical performance. In addition, the presence of nanosized rutile TiO2 in C/4-5-LTO-RT has an important contribution to the high electrochemical performance, as does the fast lithium ion diffusion along the [001] direction.
以TiO₂微球为前驱体,成功合成了Li/Ti摩尔比为3:5、4:5和4.5:5的Li₄Ti₅O₁₂/金红石TiO₂(LTO-RT)复合材料。此外,基于LTO-RT复合材料,通过水热法和高温煅烧制备了摩尔比为4:5的C包覆LTO-RT介孔微球(C/4-5-LTO-RT)。经过各种表征发现,在整个过程中,碳在保持原始制备的TiO₂前驱体的多孔纳米结构方面起着关键作用。实际上,即使在800℃高温处理后,C/4-5-LTO-RT仍具有63.70 m² g⁻¹的高比表面积。由于多孔纳米结构为锂离子和电子的扩散提供了开放且直接的通道,并且碳修饰也有效地提高了电导率,C/4-5-LTO-RT样品表现出增强的电化学性能。此外,C/4-5-LTO-RT中纳米尺寸金红石TiO₂的存在对高电化学性能有重要贡献,锂离子沿[001]方向的快速扩散也是如此。