Page 225 - Polymer-based Nanocomposites for Energy and Environmental Applications
P. 225

Polymer-based nanocomposites for energy and environmental applications  197

           [34] Arunachalam P, Ghanem MA, Al-Mayouf AM, Al-shalwi M, Abd-Elkader OH. Micro-
               wave assisted synthesis and characterization of Ni/NiO nanoparticles as electrocatalyst
               for methanol oxidation in alkaline solution. Mater Res Express 2017;4:025035.
           [35] Ghanem MA, Al-Mayouf AM, Singh JP, Arunachalam P. Concurrent deposition and exfo-
               liation of nickel hydroxide nanoflakes using liquid crystal template and their activity for
               urea electrooxidation in alkaline medium. Electrocatalysis 2017;8:16–26.
           [36] Kong LB, Zhang J, An JJ, Luo YC, Kang L. MWNTs/PANI composite materials prepared
               by in-situ chemical oxidative polymerization for supercapacitor electrodes. J Mater Sci
               2008;43:3664–9.
           [37] Sivakkumar SR, Kim WJ, Choi JA, MacFarlane DR, Forsyth M, Kim DW. Electrochem-
               ical performance of polyaniline nanofibres and polyaniline/multi-walled carbon nanotube
               composite as an electrode material for aqueous redox supercapacitors. J Power Sources
               2007;171:1062–8.
           [38] Jang M, Chen WF, Cannon FS. Preloading hydrous ferric oxide into granular activated
               carbon for arsenic removal. Environ Sci Technol 2008;42:3369–74.
           [39] Li Y, Li X, Li J, Yin J. Photocatalytic degradation of methyl orange by TiO 2 -coated acti-
               vated carbon and kinetic study. Water Res 2006;40:1119–26.
           [40] Vaughan RL, Reed BE. Modeling As(V) removal by a iron oxide impregnated activated
               carbon using the surface complexation approach. Water Res 2005;39:1005–7.
           [41] Badr Y, Mahmoud MA. Photocatalytic degradation of methyl orange by gold silver nano-
               core/silica nano-shell. J Phys Chem Solid 2007;68:413–9.
           [42] Hirano M, Ota K, Iwata H. Direct formation of anatase (TiO 2 )/silica (SiO 2 ) composite.
               Chem Mater 2004;16:3725–32.
           [43] Hansen BO, Kwan P, Benjamin MM, Li CW, Korshin GV. Use of iron oxide-coated sand
               to remove strontium from simulated Hanford tank wastes. Environ Sci Technol
               2001;35:4905–9.
           [44] Tsadilas CD, Dimoyiannis D, Samaras V. Boron sorption by manganese oxide-coated
               sand. Commun Soil Sci Plan 1998;29:2347–53.
           [45] Chan CM, Wu JS, Li JX, Cheung YK. Polypropylene/calcium carbonate nanocomposites.
               Polymer 2002;43:2981–92.
           [46] Wu D, Qinqyun M, Ying L, Yumei D, Weihong C, Hong X, et al. J Polym Sci B
               2003;41:1051–8.
           [47] Chen JF, Wang G, Zeng XF, Zhao HY, Cao YJ, Tan CK. Toughening of polypropylene-
               ethylene copolymer with nanosized CaCO 3 and styrene-butadiene-styrene. J Appl Polym
               Sci 2004;94:796–802.
           [48] Zhang QX, Yu ZZ, Xie XL, Mai YW. Crystallization and impact energy of polypropylene/
               CaCO 3 nanocomposites with nonionic modifier. Polymer 2004;45:5985–94.
           [49] Liang JZ. Melt rheology of nanometre-calcium-carbonate-filled acrylonitrile-butadiene-
               styrene (ABS) copolymer composites during capillary extrusion. Polym Int 2002;
               5:1473–8.
           [50] Lee DK, Kang YS. Structure and characterization of nanocomposite Langmuir-Blodgett
               films of poly(maleic monoester)/Fe 3 O 4 nanoparticle complexes. J Phys Chem B
               2002;106:7267–71.
           [51] Tong M, Yuan S, Long H, Zheng M. Reduction of nitrobenzene in groundwater by iron
               nanoparticles immobilized in PEG/nylon membrane. J Contam Hydrol 2011;122:16–25.
           [52] Arunachalam P, Ghanem MA, Al-Mayouf AM, Al-Shalwi M. Enhanced electrocatalytic
               performance of mesoporous nickel-cobalt oxide electrode for methanol oxidation in alka-
               line solution. Mater Lett 2017;196:365–8.
   220   221   222   223   224   225   226   227   228   229   230