Issue 15, 2013

Single-crystal β-MnO2 hollow bipyramids: synthesis and application in lithium ion batteries

Abstract

Single-crystal β-MnO2 hollow bipyramids (HB-β-MnO2) were synthesized via a template-free hydrothermal method. The as-synthesized hollow bipyramids with 100–300 nm pores along the axis direction of the β-MnO2 bipyramids are formed through self-assembly and phase transformation processes from α-MnO2 nanowires to β-MnO2 bipyramids followed by chemical etching of their metastable crystal faces. Compared to the commercial bulk β-MnO2 (c-β-MnO2), the as-synthesized HB-β-MnO2 exhibits a better electrochemical performance with an initial discharge capacity of 269 mA h g−1, which equates to up to 0.87 Li+ intercalation per β-MnO2 unit, while only 0.2 Li+ intercalation per β-MnO2 unit is observed for the commercial c-β-MnO2. The excellent electrochemical activity of the as-synthesized HB-β-MnO2 can be attributed to its hollow structure and single crystal nature. The former can provide higher contact area with the electrolyte and is able to act as a buffer against volume change during the charge/discharge processes, while the latter contributes to good electronic conductivity and stable structural integrity. Moreover, the initial HB-β-MnO2 bipyramids undergo an irreversible phase transformation to orthorhombic LixMnO2 after the first discharging process, which shows good structural stability and capacity (up to 150 mA h g−1) after 50 charge/discharge cycles.

Graphical abstract: Single-crystal β-MnO2 hollow bipyramids: synthesis and application in lithium ion batteries

Article information

Article type
Paper
Submitted
10 Dec 2012
Accepted
06 Feb 2013
First published
08 Feb 2013

RSC Adv., 2013,3, 5141-5147

Single-crystal β-MnO2 hollow bipyramids: synthesis and application in lithium ion batteries

D. Zhan, Q. Zhang, X. Hu and T. Peng, RSC Adv., 2013, 3, 5141 DOI: 10.1039/C3RA23258A

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