Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7725701 | Journal of Power Sources | 2018 | 8 Pages |
Abstract
A structurally hierarchical MnO2/TiO2 composite (Nano-MnO2@TiO2) is fabricated by calcining MnCO3 microspheres and coating a thin layer of TiO2 through the heat decomposition of tetrabutyl titanate, and evaluated as anode of gravimetrically and volumetrically high energy density lithium ion battery. The characterizations from FESEM, TEM, HRTEM and XRD, indicate that the resulting Nano-MnO2@TiO2 takes a spherical morphology with a core of about 2â¯Î¼m in diameter, consisting of compact MnO2 nanoparticles, and a shell of 60â¯nm thick, consisting of smaller TiO2 nanoparticles. The charge/discharge tests demonstrate that Nano-MnO2@TiO2 exhibits excellent performance as anode of lithium ion battery, delivering a capacity of 938â¯mAh gâ1 at 300â¯mAâ¯gâ1 after 200 cycles, compared to the 103â¯mAh gâ1 of the uncoated sample. The microsphere consisting of compact nanoparticles provides Nano-MnO2@TiO2 with high specific gravity. The dimensionally and structurally stable TiO2 maintains the integrity of MnO2 microspheres and facilitates lithium insertion/extraction. This unique structure yields the excellent cyclic stability and rate capability of Nano-MnO2@TiO2.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
Zhiguang Cao, Xiaoqiao Chen, Lidang Xing, Youhao Liao, Mengqing Xu, Xiaoping Li, Xiang Liu, Weishan Li,