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Polymer nanocomposite materials in energy storage: Properties and applications  275

           [107] Wang Y, Zhao H, Ji Y, Wang L, Wei Z. Long-life and high-rate LiVPO 4 F/C nanocrystals
                modified with graphene as cathode material for lithium-ion batteries. Solid State Ionics
                2014;268(Part A):169–73.
           [108] Arico AS, Bruce P, Scrosati B, Tarascon J-M, van Schalkwijk W. Nanostructured mate-
                rials for advanced energy conversion and storage devices. Nat Mater 2005;4(5):366–77.
           [109] Winter M, Brodd RJ. What are batteries, fuel cells, and supercapacitors? Chem Rev
                2004;104(10):4245–70.
           [110] Poizot P, Laruelle S, Grugeon S, Dupont L, Tarascon JM. Nano-sized transition-metal
                oxides as negative-electrode materials for lithium-ion batteries. Nature 2000;407
                (6803):496–9.
           [111] Nam KT, Kim D-W, Yoo PJ, Chiang C-Y, Meethong N, Hammond PT, et al. Virus-
                enabled synthesis and assembly of nanowires for lithium ion battery electrodes.
                Science 2006;312(5775):885–8.
           [112] Wang Y, Cao G. Developments in nanostructured cathode materials for high-
                performance lithium-ion batteries. Adv Mater 2008;20(12):2251–69.
           [113] Curtis CJ, Wang J, Schulz DL. Preparation and characterization of LiMn 2 O 4 spinel
                nanoparticles as cathode materials in secondary Li batteries. J Electrochem Soc
                2004;151(4):A590–8.
           [114] Li G, Pang S, Jiang L, Guo Z, Zhang Z. Environmentally friendly chemical route to vana-
                dium oxide single-crystalline nanobelts as a cathode material for lithium-ion batteries.
                J Phys Chem B 2006;110(19):9383–6.
           [115] Ragupathy P, Shivakumara S, Vasan HN, Munichandraiah N. Preparation of nanostrip
                V 2 O 5 by the polyol method and its electrochemical characterization as cathode material
                for rechargeable lithium batteries. J Phys Chem C 2008;112(42):16700–7.
           [116] Cheng F, Zhao J, Song W, Li C, Ma H, Chen J, et al. Facile controlled synthesis of MnO 2
                nanostructures of novel shapes and their application in batteries. Inorg Chem 2006;45
                (5):2038–44.
           [117] Pitchai R, Thavasi V, Mhaisalkar SG, Ramakrishna S. Nanostructured cathode materials:
                a key for better performance in Li-ion batteries. J Mater Chem 2011;21(30):11040–51.
           [118] Xu X, Lee S, Jeong S, Kim Y, Cho J. Recent progress on nanostructured 4 V cathode
                materials for Li-ion batteries for mobile electronics. Mater Today 2013;16(12):487–95.
           [119] Nova ´kP,M€ uller K, Santhanam K. Electrochemically active polymers for rechargeable
                batteries. Chem Rev 1997;97:207–82.
           [120] Gangopadhyay R, De A. Conducting polymer nanocomposites: a brief overview. Chem
                Mater 2000;12(3):608–22.
           [121] Cuentas-Gallegos AK, Go ´mez-Romero P. In-situ synthesis of polypyrrole-MnO 2  x
                nanocomposite hybrids. J New Mater Electrochem Syst 2005;8(3):181–8.
           [122] Xiao W, Chen JS, Lu Q, Lou XW. Porous spheres assembled from polythiophene (PTh)-
                coated ultrathin MnO 2 nanosheets with enhanced lithium storage capabilities. J Phys
                Chem C 2010;114(27):12048–51.
           [123] Zhan C, Yu G, Lu Y, Wang L, Wujcik E, Wei S. Conductive polymer nanocomposites: a
                critical review of modern advanced devices. J Mater Chem C 2017;5(7):1569–85.
           [124] Kumar SK, Benicewicz BC, Vaia RA, Winey KI. 50th anniversary perspective: are poly-
                mer nanocomposites practical for applications? Macromolecules 2017;50(3):714–31.
           [125] Wang S, Li S, Sun Y, Feng X, Chen C. Three-dimensional porous V 2 O 5 cathode with
                ultra high rate capability. Energy Environ Sci 2011;4(8):2854–7.
           [126] Liu D, Cao G. Engineering nanostructured electrodes and fabrication of film electrodes
                for efficient lithium ion intercalation. Energy Environ Sci 2010;3(9):1218–37.
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