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±¾ÈËÏÖͶ¸åijÆÚ¿¯£¬ÏÖÔڱ༲¿ÒªÇó×ÔÉó²éÒýÓÃÎÄÏ׵ľíºÅ¡¢ÆÚºÅÈ«²»È«£¬×Ô¼ºÔõôÉó²é£¬ÓÐʲôºÃµÄ°ì·¨Âð£¿Ð»Ð»£¬²¿·ÖÒýÓÃÎÄÏ×ÈçÏ [1]Hummers W S, Offeman R E. Preparation of graphitic oxide[J]. Journal of the American Chemical Society, 1958, 80(6):1339. [2] Chen D, Yang D, Qun Wang A, et al. Effects of boron doping on photocatalytic activity and microstructure of titanium dioxide nanoparticles[J]. Industrial & Engineering Chemistry Research, 2006, 45(12):p¨¢gs. 4110-4116. [3] He J, Ye J, Lavernia E J, et al. Quantitative analysis of grain size in bimodal powders by x-ray diffraction and transmission electron microscopy[J]. Journal of Materials Science, 2004, 39(23):6957-6964. [4] Trapalis A, Todorova N, Giannakopoulou T, et al. TiO2/graphene composite photocatalysts for NOx removal: A comparison of surfactant-stabilized graphene and reduced graphene oxide[J]. Applied Catalysis B: Environmental, 2016, 180: 637-647. [5] Hong T, Liang X, Zhang Q, et al. Enhanced photoactivity of graphene/titanium dioxide nanotubes for removal of Acetaminophen[J]. Applied Surface Science, 2015, 324:258-264. [6] Adamu H, Dubey P, Anderson J A. Probing the role of thermally reduced graphene oxide in enhancing performance of TiO2, in photocatalytic phenol removal from aqueous environments[J]. Chemical Engineering Journal, 2016, 284:380-388. [7] Hou C, Zhang Q, Li Y, et al. P25-graphene hydrogels: Room-temperature synthesis and application for removal of methylene blue from aqueous solution[J]. Journal of Hazardous Materials, 2012, 205-206(1):229-35. [8] Wang H, Wan J, Zheng X, et al. The visible light degradation activity and the photocatalytic mechanism of tetra(4-carboxyphenyl) porphyrin sensitized TiO2[J]. Materials Research Bulletin, 2014, 57(23):311-319. [9] Liu J, Lin W, Tang J, et al. Photocatalytic degradation of commercially sourced naphthenic acids by TiO2-graphene composite nanomaterial[J]. Chemosphere, 2016, 149:328-335. [10] Pant B, Saud P S, Park M, et al. General one-pot strategy to prepare Ag-TiO2 decorated reduced graphene oxide nanocomposites for chemical and biological disinfectant[J]. Journal of Alloys & Compounds, 2016, 671:51-59. [11] Miao Y, Zhai Z, Jiang L, et al. Facile and new synthesis of cobalt doped mesoporous TiO2 with high visible-light performance[J]. Powder Technology, 2014, 266(6):365¨C371. [24] Tan L L, Ong W J, Chai S P, et al. Noble metal modified reduced graphene oxide/TiO2 ternary nanostructures for efficient visible-light-driven photoreduction of carbon dioxide into methane[J]. Applied Catalysis B Environmental, 2015, 166-167:251-259. [25] Serpone N. Is the band gap of pristine TiO(2) narrowed by anion- and cation-doping of titanium dioxide in second-generation photocatalysts?[J]. Journal of Physical Chemistry B, 2006, 110(48):24287-93. [26] Dvoranov¨¢ D, Brezov¨¢ V, Maz¨²r M, et al. Investigations of meta-doped titanium dioxide photocatalysis[J]. Applied Catalysis B Environmental, 2002, 37(2):91-105. [27] Gao Y, Pu X, Zhang D, et al. Combustion synthesis of graphene oxide-TiO2, hybrid materials for photodegradation of methyl orange[J]. Carbon, 2012, 50(11):4093-4101. [28] Fu L. Carbon nanotube and graphene oxide directed electrochemical synthesis of silver dendrites[J]. Rsc Advances, 2014, 4(75):39645-39650. [29] Huang X, Yin Z, Wu S, et al. Graphene-based materials: synthesis, characterization, properties, and applications[J]. small, 2011, 7(14): 1876-1902. [30] Wu N, Wang J, Tafen D N, et al. Shape-enhanced photocatalytic activity of single-crystalline anatase TiO2 (101) nanobelts[J]. Journal of the American Chemical Society, 2010, 132(19):6679-85. [31] Jing L, Yang Z Y, Zhao Y F, et al. Ternary polyaniline-graphene-TiO2 hybrid with enhanced activity for visible-light photo-electrocatalytic water oxidation[J]. J.mater.chem.a, 2013, 2(4):1068-1075. [32] Li H S, Xu H, Wang S Y, et al. Preparation of nano-TiO2 using a sol-gel process mediated in reverse microemulsion combined with a solvent thermal technique[J]. Advanced Materials Research, 2011, 287-290:1731-1734. |
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tgfbamboo(liouzhan654´ú·¢): ½ð±Ò+1, ¸Ðл½»Á÷ 2016-10-23 17:20:49
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