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Synthesis of Ionic Liquid Based Electrolytes, Assembly of Li-ion Batteries, and Measurements of Performance at High Temperature
Published on: December 20, 2016
Low Temperature Fast-Charging Li Ion Batteries Enabled by f-Orbital Hybridization Induced TiNb2O7 Electronic
Anran Shi1,2, Lichao Tan1, Xiumei Song1
1Institute of Carbon Neutrality, Zhejiang Wanli University, Ningbo, 315100, China.
Abstract:
Li-ion batteries for electric vehicles and aviation require fast charging, long cycle life, and a wide operating temperature range. However, the lack of anode materials that offer both high capacity and stability at high charging/discharging rates significantly impedes their development. Herein, the introduction of lanthanide with f-Orbital electronic configurations widens the ion transport channels and significantly alters the original electronic structure, leading to a notable improvement in acceleration kinetics. X-ray absorption spectroscopy is employed to depict lanthanide earth elements that can lower lattice strain and accelerate the diffusion of Li+. The Tm0.01-TNO delivers an outstanding specific capacity of 150.9 mAh g-1 at 50 C. Even at low temperatures (-30 °C), Tm0.01-TNO exhibits stable cycling performance with 100% capacity retention over 500 cycles at 1 C. This work demonstrates an enormous promise for scalability in practical low-temperature applications.
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