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BIBLIOGRAPHY [1] National Research Council. The National Academies Summit on America’s Energy Future: Summary of a Meeting. The National Academies Press, Washington, DC, 2008. [2] Trevor J. Davies and Joseph J. Tummino. High-performance vanadium redox flow batteries with graphite felt electrodes. C, 4(1), 2018. [3] Adam Z. Weber, Matthew M. Mench, Jeremy P. Meyers, Philip N. Ross, Jeffrey T. Gostick, and Qinghua Liu. Redox flow batteries: a review. Journal of Applied Electrochemistry, 41(10):1137, Sep 2011. [4] Nak Heon Choi, S.-k Kwon, and Hansung Kim. Analysis of the oxidation of the v(ii) by dissolved oxygen using uv-visible spectrophotometry in a vanadium redox flow battery. Journal of the Electrochemical Society, 160:A973–A979, 03 2013. [5] Gareth Kear, Akeel A. Shah, and Frank C. Walsh. Development of the all-vanadium redox flow battery for energy storage: a review of technological, financial and policy aspects. International Journal of Energy Research, 36(11):1105–1120, 2012. [6] Katharine V. Greco, Antoni Forner-Cuenca, Adrian Mularczyk, Jens Eller, and Fikile R. Brushett. Elucidating the nuanced effects of thermal pretreatment on carbon paper electrodes for vanadium redox flow batteries. ACS Applied Materials & Interfaces, 10(51):44430–44442, 2018. PMID: 30335358. [7] Mohammed Al-Yasiri and Jonghyun Park. Study on channel geometry of all- vanadium redox flow batteries. Journal of The Electrochemical Society, 164:A1970– A1982, 01 2017. [8] Jingyu Xi, Zenghua Wu, Xinping Qiu, and Liquan Chen. Nafion/sio2 hybrid mem- brane for vanadium redox flow battery. Journal of Power Sources, 166(2):531 – 536, 2007. [9] Zhijiang Tang, Douglas S. Aaron, Alexander B. Papandrew, and Thomas A. Za- wodzinski. Monitoring the state of charge of operating vanadium redox flow bat- teries. ECS Transactions, 41(23):1–9, 2012. 25PDF Image | PERFORMANCE EVALUATION OF A REDOX FLOW BATTERY
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