Page 598 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 598

Hybrid materials based on polymer nanocomposites for environmental applications  551

           [140] Costa CM, Silva MM, Lanceros-Mendez S. Battery separators based on vinylidene fluo-
                ride (VDF) polymers and copolymers for lithium ion battery applications. RSC Adv
                2013;3:11404–17.
           [141] Nacimiento F, Gonzalez JR, Alcantara R, Ortiz GF, Tirado JL. Improving the electro-
                chemical properties of self-organized titanium dioxide nanotubes in lithium batteries
                by surface polyacrylonitrile electropolymerization. J Electrochem Soc 2013;160:
                A3026–35.
           [142] Scrosati B, Hassoun J, Sun YK. Lithium-ion batteries. A look into the future. Energy
                Environ Sci 2011;4:3287–95.
           [143] De Almeida A, Santos B, Paolo B, Quicheron M. Solid state lighting review – Potential
                and challenges in Europe. Renew Sust Energ Rev 2014;34:30–48.
           [144] Nguyen TP, Destruel P. Electroluminescent devices based on organic materials and con-
                jugated polymers. In: Nalwa HS, Rohwer LS, editors. Handbook of luminescence, dis-
                play materials, and devices. vol. 1. Stevenson Ranch, CA: American Scientific
                Publishers; 2002. p. 1–129.
           [145] Shinar J, Shinar R. Organic light-emitting devices (OLEDs) and OLED-based chemical
                and biological sensors: an overview. J Phys D Appl Phys 2008;41:133001.
           [146] Reineke S, Thomschke M, L€ ussem B, Leo K. White organic light-emitting diodes: status
                and perspective. Rev Mod Phys 2013;85:1245–93.
           [147] Liu J, Xie ZY, Cheng YX, Geng YH, Wang LX, Jing XB, et al. Molecular design on
                highly efficient white electroluminescence from a single-polymer system with simulta-
                neous blue, green, and red emission. Adv Mater 2007;19:531–5.
           [148] Dai X, Zhang Z, Jin Y, Niu Y, Cao H, Liang X, et al. Solution-processed, high perfor-
                mance light-emitting diodes based on quantum dots. Nature 2014;515:96–9.
           [149] Anni M, Manna L, Cingolani R, Valerini D, Creti A, Limassol M. Forster energy transfer
                from blue-emitting polymers to colloidal CdSe/ZnS core shell quantum dots. Appl Phys
                Lett 2004;85:4169–71.
           [150] Li Y, Rizzo A, Cingolani R, Gigli G. Bright white-light-emitting device from ternary
                nanocrystal composites. Adv Mater 2006;18:2545–8.
           [151] Martınez-Sarti L, Koh TM, La-Plac MG, Boix PP, Sessolo M, Mhaisalkar SG, et al. Effi-
                cient photoluminescent thin films consisting of anchored hybrid perovskite
                nanoparticles. Chem Commun 2016;52:11351–4.
   593   594   595   596   597   598   599   600   601   602   603