@inproceedings{53fb24d30b16414fb1efceaaaddd0492,
title = "Vanadium oxide polycrystalline nanorods and ion-exchanged nanotubes for enhanced lithium intercalation",
abstract = "In this work we investigate two alternative methods to remove amine molecules from as-synthesized vanadium oxide nanotubes (VONTs). Thermal treatment results in the formation of polycrystalline nanorods (poly-NRs) and ion exchange reactions with NaCl result in the formation of Na-VONTs. The removal of amine molecules is confirmed by monitoring the inorganic and organic phase changes and decomposition, respectively, using electron microscopy, IR spectroscopy and X-ray diffraction analyses. We compare the electrochemical performance of assynthesized VONTs, poly-NRs and Na-VONTs. This work demonstrates that the presence of amine molecules within the layers of vanadium oxide impedes the intercalation of lithium ions, and that their removal results in a significant improvement in electrochemical characteristics. Out of the three vanadium oxide nanostructures investigated, poly-NRs exhibit the most promising results for practical use as a cathode material.",
author = "D. McNulty and Buckley, \{D. N.\} and C. O'Dwyer",
note = "Publisher Copyright: {\textcopyright} 2015 The Electrochemical Society.; Symposium on Lithium-Ion Batteries - 2014 ECS and SMEQ Joint International Meeting ; Conference date: 05-10-2014 Through 09-10-2014",
year = "2014",
doi = "10.1149/06422.0001ecst",
language = "English",
series = "ECS Transactions",
publisher = "Electrochemical Society Inc.",
number = "22",
pages = "1--12",
editor = "S. Meng and K. Amine and J. Wu",
booktitle = "Lithium-Ion Batteries",
address = "United States",
edition = "22",
}