跳到主要导航 跳到搜索 跳到主要内容

Study of TiO2-Coated α-Fe2O3Composites and the Oxygen-Defects Effect on the Application as the Anode Materials of High-Performance Li-Ion Batteries

  • Yangzhou Ma
  • , Li Zhang
  • , Zhenfei Cai
  • , Xuanning Huang
  • , Bo Ding
  • , Zishan Ahsan
  • , Guangsheng Song
  • , Youlong Xu
  • , Weidong Yang
  • , Cuie Wen
  • Anhui University of Technology
  • Xi'an Jiaotong University
  • CSIRO
  • Royal Melbourne Institute of Technology University

科研成果: 期刊稿件文章同行评审

27 引用 (Scopus)

摘要

TiO2-coated Fe2O3 composites exhibiting high electrochemical stability with oxygen defects were synthesized as the anode materials of Li-ion batteries using an easy sol-gel method. The industrial submicron-sized Fe2O3 with no special shape and commercial tetrabutyl titanate were adopted as raw materials. The phase structures, morphologies, and elements distribution on the surface were characterized by X-ray diffraction analysis, electron paramagnetic resonance, scanning electron microscopy, X-ray photoelectron spectroscopy, and so forth. Results indicated that TiO2 was well coated on the surface of raw Fe2O3 with an average thickness of 5.5 nm, and the oxygen defects were successfully introduced into the composites with the reduction treatment. Electrochemical characterization indicated that TiO2 coating was beneficial to the cycle performance of Fe2O3. The coating layer significantly improved the electronic conductivity and cycling stability of the Fe2O3 anode material, as theoretically supported by the density functional theory calculation. Moreover, the introduction of oxygen defects in samples resulted in more excellent cycling stability compared to that in samples without reduction. The reduced Fe2O3@0.2TiO2 sample exhibited a specific discharge capacity of 405.6 mA h·g-1 after 150 cycles, which effectively improved the intrinsic cycling performance of Fe2O3, and a corresponding discharge capacity of 50 mA h·g-1 after 30 cycles.

源语言英语
页(从-至)11666-11673
页数8
期刊ACS Applied Energy Materials
3
12
DOI
出版状态已出版 - 28 12月 2020

学术指纹

探究 'Study of TiO2-Coated α-Fe2O3Composites and the Oxygen-Defects Effect on the Application as the Anode Materials of High-Performance Li-Ion Batteries' 的科研主题。它们共同构成独一无二的学术指纹。

引用此