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High-rate capability of carbon-coated micron-sized hexagonal TT-Nb2O5 composites for lithium-ion battery
Authors:Xueli Chen  Ke Liu  Qianwan Qin  Zhenlu Yu  Meiqing Li  Xingyu Qu  Yu Zhou  Aichun Dou  Mingru Su  Yunjian Liu
Abstract:With excellent specific capacity, superior cycle stability, safety and strong practical, Nb2O5 has been considered as one of the prospective anode materials for lithium-ion batteries (LIBs). However, current study suggests that Nb2O5 electrode materials for LIBs still face the vital issues of low electrical conductivity and poor rate performance. Therefore, carbon-coated TT-Nb2O5 materials are designed and synthesized through solid state method in this work, which present high specific capacity (228 mA h g?1 at 0.2C), satisfactory rate properties (107 mA h g?1 at 20 C). The outstanding electrochemical property can not only give the credit to the pseudocapacitance effect of TT-Nb2O5, but also attribute to introduction of carbon. The homogeneous carbon-coated materials enhance the electrical conductivity, increase the electron transmission speed and alleviate particle crushing. This research not only offers a new method for preparing excellent electrode materials, but also provides a kind of excellent anode material with prospective application for LIBs.
Keywords:Lithium-ion batteries  Carbon-coated  Solid state  High rate
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