Novel synthesis and electrochemical investigations of ZnO/C composites for lithium-ion batteries

被引:0
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作者
E. Thauer
G. S. Zakharova
E. I. Andreikov
V. Adam
S. A. Wegener
J. -H. Nölke
L. Singer
A. Ottmann
A. Asyuda
M. Zharnikov
D. M. Kiselkov
Q. Zhu
I. S. Puzyrev
N. V. Podval’naya
R. Klingeler
机构
[1] Kirchhoff Institute of Physics,Institute of Solid State Chemistry, Ural Division
[2] Heidelberg University,I.Ya. Postovskii Institute of Organic Synthesis, Ural Division
[3] Russian Academy of Sciences,Applied Physical Chemistry
[4] Ural Federal University,Institute of Technical Chemistry, Ural Division
[5] Russian Academy of Sciences,School of Material Science and Engineering
[6] Heidelberg University,Centre for Advanced Materials
[7] Russian Academy of Sciences,undefined
[8] Wuhan University of Technology,undefined
[9] Heidelberg University,undefined
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摘要
For the first time, ZnO/C composites were synthesized using zinc glycerolate as a precursor through one-step calcination under a nitrogen atmosphere. The effect of the heat treatment conditions on the structure, composition, morphology as well as on the electrochemical properties regarding application in lithium-ion batteries are investigated. The products obtained by calcination of the precursor in nitrogen at 400—800 °C consist of zinc oxide nanoparticles and amorphous carbon that is in-situ generated from organic components of the glycerolate precursor. When used as anode material for lithium-ion batteries, the as-prepared ZnO/C composite synthesized at a calcination temperature of 700 °C delivers initial discharge and charge capacities of 1061 and 671 mAh g−1 at a current rate of 100 mA g−1 and hence 1.5 times more than bare ZnO, which reaches only 749/439 mAh g−1. The native carbon improves the conductivity, allowing efficient electronic conductivity and Li-ion diffusion. By means of ex-situ XRD studies a two-step storage mechanism is proven.
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页码:13227 / 13242
页数:15
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