Key Laboratory of Automobile Materials, Department of Materials Science and Engineering, Jilin University , Changchun 130025, P.R. China.
Key Laboratory of Bionic Engineering (Ministry of Education) and State Key Laboratory of Automotive Simulation and Control, Jilin University , Changchun 130022, P.R. China.
ACS Appl Mater Interfaces. 2017 Feb 8;9(5):4649-4657. doi: 10.1021/acsami.6b15021. Epub 2017 Jan 24.
Ultrathin dual phase nanosheets consisting of alternating spinel LiTiO (LTO) and rutile TiO (RT) lamellas are synthesized through a facile and scalable hydrothermal method, and the formation mechanism is explored. The thickness of constituent lamellas can be controlled exactly by adjusting the mole ratio of Li:Ti in the original reactants. Alternating insertion of the RT lamellas significantly improves the electrochemical performance of LTO nanosheets, especially at high charge/discharge rates. As anodes in lithium-ion batteries (LIBs), the dual phase nanosheet electrode with the optimized phase ratio can deliver stable discharge capacities of 178.5, 154.9, 148.4, 142.3, 138.2, and 131.4 mA h g at current densities of 1, 10, 20, 30, 40, and 50 C, respectively. Meanwhile, they inherit the excellent cyclic stability of pure spinel LTO and exhibit a capacity retention of 93.1% even after 500 cycles at 50 C. Our results indicate that the alternating nanoscaled lamella structure is a good alternative to facilitate the transfer of both the Li ions and electrons into the spinel LTO, giving rise to an excellent cyclability and fast rate performance. Therefore, the newly prepared carbon-free LTO-RT nanosheets with high safety provide a new opportunity to develop high-power anodes for LIBs.
通过简便且可扩展的水热法合成了由交替的尖晶石 LiTiO(LTO)和金红石 TiO(RT)层组成的超薄双相纳米片,并探索了其形成机制。通过调整原始反应物中 Li:Ti 的摩尔比,可以精确控制组成层的厚度。RT 层的交替插入显著提高了 LTO 纳米片的电化学性能,尤其是在高充放电速率下。作为锂离子电池(LIBs)的阳极,具有优化相比例的双相纳米片电极在电流密度为 1、10、20、30、40 和 50 C 时,分别可提供稳定的放电容量为 178.5、154.9、148.4、142.3、138.2 和 131.4 mA h g。同时,它们继承了纯尖晶石 LTO 的优异循环稳定性,即使在 50 C 下 500 次循环后,容量保持率仍为 93.1%。我们的结果表明,交替纳米层结构是促进锂离子和电子进入尖晶石 LTO 的有效方法,可实现优异的循环稳定性和快速倍率性能。因此,新制备的无碳 LTO-RT 纳米片具有高安全性,为开发高功率 LIBs 阳极提供了新机会。