Microwave‐assisted synthesis and electrochemical characterization of TiNb2O7microspheres as anode materials for lithium‐ion batteries

Author:

Gupta Karan Kumar1,Li Kuo‐Chen1,Balaji Sivaramakrishnan1,Kumar Parthasarathi Senthil1,Lu Chung‐Hsin123ORCID

Affiliation:

1. Department of Chemical Engineering National Taiwan University Taipei Taiwan ROC

2. Department of Chemical Engineering National Taiwan University of Science and Technology Taipei Taiwan ROC

3. Advanced Research Center of Green Materials Science & Technology National Taiwan University Taipei Taiwan ROC

Abstract

AbstractTiNb2O7microspheres are prepared via a microwave‐assisted solvothermal method. The microwave irradiation lowers the compound formation temperature to 600°C, and highly crystalline TiNb2O7powders are obtained upon calcination at 800°C. Morphological analysis of the sample shows uniformly distributed microspheres with a particle size of around 1 μm. The Li+‐ion diffusion coefficient calculated from the electrochemical impedance result is around 1.21 × 10−13 cm2 s−1, which is 1.5 times higher than the sample obtained from the conventional solvothermal method. The TiNb2O7sample derived from microwave yields a high discharge capacity of 299 mA h g−1at 0.1 C, whereas the sample synthesized via the conventional solvothermal process yields only 278 mA h g−1at 0.1 C. Excellent rate capabilities such as 220 mA h g−1at 5 C and 180 mA h g−1at 10 C are also observed for the microwave‐assisted solvothermal sample. Moreover, the sample exhibits a large capacity retention of 95.5% after 100 discharge–charge cycles at 5 C. These results reveal the appropriateness of the microwave‐assisted solvothermal process to prepare TiNb2O7powders with superior properties for battery applications.

Funder

Ministry of Education

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

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