Page 150 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 150

Energy and environmental applications of graphene and its derivatives  125

           [31] Rao CeNeR, Sood AeK, Subrahmanyam KeS, Govindaraj A. Graphene: the new two-
               dimensional nanomaterial. Angew Chem Int Ed 2009;48:7752–77.
           [32] Hu W, Peng C, Lv M, Li X, Zhang Y, Chen N, et al. Protein corona-mediated mitigation of
               cytotoxicity of graphene oxide. ACS Nano 2011;5:3693–700.
           [33] Schinwald A, Murphy FA, Jones A, MacNee W, Donaldson K. Graphene-based
               nanoplatelets: a new risk to the respiratory system as a consequence of their unusual aero-
               dynamic properties. ACS Nano 2012;6:736–46.
           [34] Wei D, Kivioja J. Graphene for energy solutions and its industrialization. Nanoscale
               2013;5:10108–26.
           [35] Liu J, Liu Z, Barrow CJ, Yang W. Molecularly engineered graphene surfaces for sensing
               applications: a review. Anal Chim Acta 2015;859:1–19.
           [36] Singh S, Kumar N, Meena VK, Kranz C, Mishra S. Impedometric phenol sensing using
               graphenated electrochip. Sensors Actuators B Chem 2016;237:318–28.
           [37] Wu Z-S, Ren W, Wen L, Gao L, Zhao J, Chen Z, et al. Graphene anchored with Co 3 O 4
               nanoparticles as anode of lithium ion batteries with enhanced reversible capacity and
               cyclic performance. ACS Nano 2010;4:3187–94.
           [38] Zhang B, Zheng QB, Huang ZD, Oh SW, Kim JK. SnO 2 -graphene-carbon nanotube mix-
               ture for anode material with improved rate capacities. Carbon 2011;49:4524–34.
           [39] Xu C, Xu B, Gu Y, Xiong Z, Sun J, Zhao X. Graphene-based electrodes for electrochem-
               ical energy storage. Energy Environ Sci 2013;6:1388–414.
           [40] Brownson DA, Kampouris DK, Banks CE. Graphene electrochemistry: fundamental con-
               cepts through to prominent applications. Chem Soc Rev 2012;41:6944–76.
           [41] Chen L, Liu Y, Zhao Y, Chen N, Qu L. Graphene-based fibers for supercapacitor appli-
               cations. Nanotechnology 2015;27:032001.
           [42] Han T-H, Lee Y, Choi M-R, Woo S-H, Bae S-H, Hong BH, et al. Extremely efficient flex-
               ible organic light-emitting diodes with modified graphene anode. Nat Photonics
               2012;6:105–10.
           [43] Bonaccorso F, Sun Z, Hasan T, Ferrari A. Graphene photonics and optoelectronics. Nat
               Photonics 2010;4:611–22.
           [44] Liu J, Durstock M, Dai L. Graphene oxide derivatives as hole-and electron-extraction
               layers for high-performance polymer solar cells. Energy Environ Sci 2014;7:1297–306.
           [45] Bonaccorso F, Colombo L, Yu G, Stoller M, Tozzini V, Ferrari AC, et al. Graphene,
               related two-dimensional crystals, and hybrid systems for energy conversion and storage.
               Science 2015;347:1246501.
           [46] Raccichini R, Varzi A, Passerini S, Scrosati B. The role of graphene for electrochemical
               energy storage. Nat Mater 2015;14:271–9.
           [47] Ramachandran R, Mani V, Chen S-M, Saraswathi R, Lou B-S. Recent trends in graphene
               based electrode materials for energy storage devices and sensors applications. Int
               J Electrochem Sci 2013;8:11680–94.
           [48] Pati MK, Pattojoshi P, Roy GS. Fabrication and characterization of graphene based
               nanocomposite for electrical properties. Adv Mater Phys Chem 2015;5:22.
           [49] Reddy ALM, Srivastava A, Gowda SR, Gullapalli H, Dubey M, Ajayan PM. Synthesis of
               nitrogen-doped  graphene  films  for  lithium  battery  application.  ACS  Nano
               2010;4:6337–42.
           [50] Zhang C, Hao R, Liao H, Hou Y. Synthesis of amino-functionalized graphene as metal-
               free catalyst and exploration of the roles of various nitrogen states in oxygen reduction
               reaction. Nano Energy 2013;2:88–97.
           [51] Liu F, Song S, Xue D, Zhang H. Folded structured graphene paper for high performance
               electrode materials. Adv Mater 2012;24:1089–94.
   145   146   147   148   149   150   151   152   153   154   155