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A hydrothermal synthesis of Ru-doped LiMn1.5Ni0.5O4 cathode materials for enhanced electrochemical performance.
Zhou, Dengfeng; Li, Junqi; Chen, Can; Lin, Fangchang; Wu, Hongming; Guo, Jianbing.
Afiliação
  • Zhou D; College of Materials and Metallurgy, Guizhou University Guiyang 550025 China jqli@gzu.edu.cn jianbing.guo@126.com.
  • Li J; School of Materials and Metallurgical Engineering, Guizhou Institute of Technology Guiyang 550003 China.
  • Chen C; College of Materials and Metallurgy, Guizhou University Guiyang 550025 China jqli@gzu.edu.cn jianbing.guo@126.com.
  • Lin F; College of Materials and Metallurgy, Guizhou University Guiyang 550025 China jqli@gzu.edu.cn jianbing.guo@126.com.
  • Wu H; College of Materials and Metallurgy, Guizhou University Guiyang 550025 China jqli@gzu.edu.cn jianbing.guo@126.com.
  • Guo J; National Engineering Research Center for Compounding and Modification of Polymer Materials Guiyang 550014 China.
RSC Adv ; 11(21): 12549-12558, 2021 Mar 29.
Article em En | MEDLINE | ID: mdl-35423793
An Ru-doped spinel-structured LiNi0.5Mn1.5O4 (LNMO) cathode has been prepared via a simple hydrothermal synthesis method. The as-prepared cathode is characterized via Fourier transform infrared (FTIR) spectroscopy, powder X-ray diffraction (XRD), scanning electron microscopy (SEM), laser particle size distribution analysis, X-ray photoelectron spectroscopy (XPS) and electrochemistry performance tests. The FTIR spectroscopy and XRD analyses show that the Ru-doped LNMO has a good crystallinity with a disordered Fd3̄m space group structure. The disordered structure in the cathode increased and the Li x Ni1-x O impurity phase decreased when Ru addition increased. SEM shows that all samples are octahedral particles with homogeneous sizes distribution, and the particle size analysis shows that the Ru-doped samples have smaller particle size. XPS confirms the existence of Ru ions in the sample, and reveals that the Ru induce to part of Mn4+ transfers to Mn3+ in the LNMO. The electrochemical property indicated that the Ru-doped cathode exhibits better electrochemical properties in terms of discharge capacity, cycle stability and rate performance. At a current density of 50 mA g-1, the discharge specific capacity of the Ru-4 sample is 140 mA h g-1, which is much higher than that of the other samples. It can be seen from the rate capacity curves that the Ru-doped samples exhibit high discharge specific capacity, particularly at high current density.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2021 Tipo de documento: Article