Issue 33, 2015

HxMoO3−y nanobelts with sea water as electrolyte for high-performance pseudocapacitors and desalination devices

Abstract

Pseudocapacitors, which store charge through fast reversible redox reactions occuring at the surface of the electrode, could offer higher specific capacitance than electrochemical double-layer capacitors (EDLCs). However, the prime pseudocapacitive phase, transition metal oxides usually have poor electronic conductivity, limiting their practical application. Here, we fabricated highly conductive HxMoO3−y nanobelts as electrode materials for pseudocapacitors. This electrode has demonstrated great electrochemical activity in various aqueous cation solutions with the highest volumetric capacitance of over 350 F cm−3. Significantly, this electrode has high specific capacitance as well as excellent cycling stability in sea water. Moreover, this hybrid composite also exhibits remarkable ion electrosorptive capacity (4 mg g−1) as a desalination electrode.

Graphical abstract: HxMoO3−y nanobelts with sea water as electrolyte for high-performance pseudocapacitors and desalination devices

Supplementary files

Article information

Article type
Paper
Submitted
12 Jul 2015
Accepted
21 Jul 2015
First published
21 Jul 2015

J. Mater. Chem. A, 2015,3, 17217-17223

Author version available

HxMoO3−y nanobelts with sea water as electrolyte for high-performance pseudocapacitors and desalination devices

L. Huang, X. Gao, Q. Dong, Z. Hu, X. Xiao, T. Li, Y. Cheng, B. Yao, J. Wan, D. Ding, Z. Ling, J. Qiu and J. Zhou, J. Mater. Chem. A, 2015, 3, 17217 DOI: 10.1039/C5TA05251C

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