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Redox Flow Batteries Fundamentals and Applications

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Redox Flow Batteries Fundamentals and Applications ( redox-flow-batteries-fundamentals-and-applications )

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118 Redox - Principles and Advanced Applications [33] Duduta M, Ho B, Wood VC, Limthongkul P, Brunini VE, Carter WC, Chiang Y-M. Semi- solid lithium rechargeable flow battery. Advanced Energy Materials. 2011;1:511–516. DOI: 10.1002/aenm.201100152 [34] Qi Z, Liu AL, Koenig Jr GM. Carbon-free solid dispersion LiCoO2 redox couple charac- terization and electrochemical evaluation for all solid dispersion redox flow batteries. Electrochimica Acta. 2017;228:91–99. DOI: 10.1016/j.electacta.2017.01.061 [35] Ventosa E, Buchholz D, Klink S, Flox C, Chagas LG, Vaalma C, Schuhmann W, Passerini S, Morante JR. Non-aqueous semi-solid flow battery based on Na-ion chemistry. P2-type NaxNi0.22Co0.11Mn0.66O2-NaTi2(PO4)3. Chemical Communications. 2015;51:7298–7301. DOI: 10.1039/c4cc09597a [36] Oh SH, Lee C-W, Chun DH, Jeon J-D, Shim J, Shin KH, Yang JH. A metal-free and all- organic redox flow battery with polythiophene as the electroactive species. Journal of Materials Chemistry A. 2014;2:19994–19998. DOI: 10.1039/c4ta04730c [37] Wu S, Zhao Y, Li D, Xia Y, Si S. An asymmetric Zn//Ag doped polyaniline microparticle suspension flow battery with high discharge capacity. Journal of Power Sources. 2015; 275:305–311. DOI: 10.1016/j.jpowsour.2014.11.012 [38] Huang Q, Li H, Grätzel M, Wang Q. Reversible chemical delithiation/lithiation of LiFePO4: Towards a redox flow lithium-ion battery. Physical Chemistry Chemical Phys- ics. 2013;15:1793–1797. DOI: 10.1039/c2cp44466f

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