[1] 李耀,刘利,胡金山,等. 基于石墨烯吸附净化材料的研究进 展[J]. 功能材料,2015(增刊1):11-16.
[2] Xiong Zhigang,Zhang Lili,Ma Jizhen,et al. Photocatalytic degradation of dyes over graphene-gold nanocomposites under visible light irradiation[J]. Chemical Communications,2010,46 (33):6099-6101.
[3] Dong Yi,Wu Deyi,Chen Xuechu,et al. Adsorption of bisphenol A from water by surfactant-modified zeolite[J]. Journal of Colloid and Interface Science,2010,348(2):585-590.
[4] Chung S G,Ryu J C,Song M K,et al. Modified composites based on mesostructured iron oxyhydroxide and synthetic minerals:A potential material for the treatment of various toxic heavy metals and its toxicity[J]. Journal of Hazardous Materials,2014,267(3):161-168.
[5] Cai Zhongyu,Xiong Zhigang,Lu Xianmao,et al. Insitu gold-loaded titania photonic crystals with enhanced photocatalytic activity[J]. Journal of Materials Chemistry,2014,2(2):545-553.
[6] Cai Zhongyu,Teng Jinghua,Xiong Zhigang,et al. Fabrication of TiO2 binary inverse opals without overlayers via the sandwich-vacuum infiltration of precursor[J]. Langmuir,2011,27(8):5157-5164.
[7] Zhang Zheye,Xiao Fei,Guo Yunlong,et al. One-pot self-assembled three-dimensional TiO2-graphene hydrogel with improved adsorption capacities and photocatalytic and electrochemical activities[J]. Acs Applied Materials & Interfaces,2013,5(6): 2227-2233.
[8] Cohentanugi D,Grossman J C. Water desalination across nanoporous graphene[J]. Nano Letters,2012,12(7):3602-3608.
[9] Han T H,Lee Y,Choi M R,et al. Extremely efficient flexible organic light-emitting diodes with modified graphene anode[J]. Nature Photonics,2012,6(2):105-110.
[10] Lu Ye,Goldsmith B R,Kybert N J,et al. DNA-decorated graphene chemical sensors[J]. Applied Physics Letters,2010,97(8):107-109.
[11] Shan Changsheng,Tang Hao,Wong Tailun,et al. Facile synthesis of a large quantity of graphene by chemical vapor deposition:an advanced catalyst carrier[J]. Advanced Materials,2012,24(18): 2491-2495.
[12] Li Ning,Zhang Qi,Gao Song,et al. Three-dimensional graphene foam as a biocompatible and conductive scaffold for neural stem cells[J]. Scientific Reports,2013,3(4):132-132.
[13] 邓会,孙鹏展,张迎九,等. 石墨烯材料在水处理中的应用:传质 机制与吸附特性[J]. 科学通报,2015(33):3196-3209.
[14] 肖蓝,王祎龙,于水利,等. 石墨烯及其复合材料在水处理中的 应用[J]. 化学进展,2013,25(2/3):419-430.
[15] 刘彦静,曾小兵,代朝猛,等. 石墨烯纳米复合材料在水处理中 的应用研究进展[J]. 材料导报,2013,27(7):127-130.
[16] 祁振. 石墨烯的制备与吸附性能研究[D]. 济南:山东大学, 2013.
[17] 邹禹涵. 石墨烯材料在水处理中的应用进展研究[J]. 化工管 理,2015(1):83-85.
[18] Chen Jianwei,Shi Jianwen,Wang Xu,et al. Recent progress in the preparation and application of semiconductor/graphene composite photocatalysts[J]. Chinese Journal of Catalysis,2013,34(4):621-640.
[19] Li Chun,Shi Gaoquan. Three-dimensional graphene architec-tures[J]. Nanoscale,2012,4(18):5549-5563.
[20] Chang Haixin,Wu Hongkai. Graphene-based nanocomposites: preparation,functionalization,and energy and environmental appli-cations[J]. Energy & Environmental Science,2013,6(12):3483-3507.
[21] 张用吉. 石墨烯及其聚合物复合薄膜的制备与性能研究[D]. 太原:中北大学,2014.
[22] 刘虹丽. 铁氧体/石墨烯复合材料的制备及吸附性能的研 究[D]. 北京:北京化工大学,2013.
[23] Loh K P,Bao Q,Eda G,et al. Graphene oxide as a chemically tunable platform for optical applications[J]. Nature Chemistry, 2010,2(12):1015-1024.
[24] Song Saijie,Ma Yufei,Shen He,et al. Removal and recycling of ppm levels of methylene blue from an aqueous solution with graphene oxide[J]. Rsc Advances,2015,5(35):27922-27932.
[25] Rizzo L,Fiorentino A,Grassi M,et al. Advanced treatment of urban wastewater by sand filtration and graphene adsorption for wastewater reuse:Effect on a mixture of pharmaceuticals and toxicity[J]. Journal of Environmental Chemical Engineering, 2015,3(1):122-128.
[26] Zhou Guiyin,Liu Chengbin,Tang Yanhong,et al. Sponge-like poly-siloxane-graphene oxide gel as a highly efficient and renewable ad-sorbent for lead and cadmium metals removal from wastewater[J]. Chemical Engineering Journal,2015,280:275-282.
[27] Wang Yilong,Liang Song,Chen Bingdi,et al. Synergistic removal of Pb(Ⅱ),Cd(Ⅱ)and humic acid by Fe3O4@mesoporous silica-graphene oxide composites[J]. Plos One,2013,8(6):e65634.
[28] Fu You,Wang Jingyi,Liu Qingxia,et al. Water-dispersible magnetic nanoparticle-graphene oxide composites for selenium removal[J]. Carbon,2014,77(2):710-721.
[29] Li Leilei,Luo Chuannan,Li Xiangjun,et al. Preparation of magnetic ionic liquid/chitosan/graphene oxide composite and application for water treatment[J]. International Journal of Biological Macromolecules,2014,66(5):172-178.
[30] 武文琴. 氧化石墨烯及其复合材料对重金属铜的吸附性能研 究[D]. 长沙:湖南大学,2013.
[31] Zhang Fengrong,Song Yawen,Song Shue,et al. Synthesis of mag-netite-graphene oxide-layered double hydroxide composites and ap-plications for the removal of Pb(Ⅱ)and 2,4-dichlorophenoxyace-tic acid from aqueous solutions[J]. Acs Applied Materials & Inter-faces,2015,7(13):7251-7263.
[32] Tan Mengting,Liu Xiang,Li Wei,et al. Enhancing sorption capacities for copper(Ⅱ)and lead(Ⅱ)under weakly acidic conditions by l-tryptophan-functionalized graphene oxide[J]. Journal of Chemical & Engineering Data,2015,60(5):1469-1475.
[33] Li Huai,Chi Zifang,Li Jianzheng. Covalent bonding synthesis of magnetic graphene oxide nanocomposites for Cr(Ⅲ)removal[J]. Desalination and Water Treatment,2014,52(10/11/12):1937-1946.
[34] Kumar A S K,Rajesh N. Exploring the interesting interaction between graphene oxide,Aliquat-336(a room temperature ionic liquid) and chromium(Ⅵ) for wastewater treatment[J]. Rsc Advances,2013,3(8):2697-2709.
[35] 冯冬燕. 石墨烯基碳纳米材料对类金属和抗生素吸附特性研 究[D]. 苏州:苏州科技学院,2014.
[36] Liu Jun,Li Peng,Xiao Hang,et al. Understanding flocculation mechanism of graphene oxide for organic dyes from water: Experimental and molecular dynamics simulation [J]. Aip Advances,2015,5(11):141.
[37] Zhang Wenjie,Zhou Chunjiao,Zhou Weichang,et al. Fast and con-siderable adsorption of methylene blue dye onto graphene ox-ide[J]. Bulletin of Environmental Contamination and Toxicology, 2011,87(1):86-90.
[38] Wu Zhibin,Zhong Hua,Yuan Xingzhong,et al. Adsorptive removal of methylene blue by rhamnolipid-functionalized graphene oxide from wastewater[J]. Water Research,2014,67:330-344.
[39] Wang Ruibin,Yang Rendang,Wang Bin,et al. Efficient degradation of Methylene Blue by the nano TiO2-functionalized graphene oxide nanocomposite photocatalyst for wastewater treatment[J]. Water Air & Soil Pollution,2016,227(1):1-9.
[40] Zhou Chunjiao,Zhang Wenjie,Wang Huixian,et al. Preparation of Fe3O4-embedded graphene oxide for removal of Methylene Blue[J]. Arabian Journal for Science and Engineering,2014,39 (9):6679-6685.
[41] Zhao Heng,Jiao Tifeng,Zhang Lexin,et al. Preparation and adsorption capacity evaluation of graphene oxide-chitosan composite hydrogels[J]. Science China Materials,2015,58(10):811-818.
[42] Cheng Chong,Deng Jie,Lei Bei,et al. Toward 3D graphene oxide gels based adsorbents for high-efficient water treatment via the promotion of biopolymers[J]. Journal of Hazardous Materials, 2013,263(2):467-478.
[43] Du Hang,Wang Zhen,Chen Yinghao,et al. Anchoring superpara-magnetic core-shells onto reduced graphene oxide:fabrication of Ni-carbon-RGO nanocomposite for effective adsorption and separa-tion[J]. Rsc Advances,2015,5(13):10033-10039.
[44] Wang Wanjun,Huang Guocheng,Yu J C,et al. Advances in photocatalytic disinfection of bacteria: Development of photocatalysts and mechanisms[J]. Journal of Environmental Sciences,2015,34:232-247.
[45] Bhunia S K,Jana N R. Reduced graphene oxide-silver nanoparticle composite as visible light photocatalyst for degradation of colorless endocrine disruptors[J]. Acs Applied Materials & Interfaces, 2014,6(22):20085-20092.
[46] Gao Peng,Ng K,Sun D D. Sulfonated graphene oxide-ZnO-Ag photocatalyst for fast photodegradation and disinfection under visible light[J]. Journal of Hazardous Materials,2013,262: 826-835.
[47] Guo Sheng,Zhang Gaoke,Yu J C. Enhanced photo-Fenton degra-dation of rhodamine B using graphene oxide-amorphous FePO4 as effective and stable heterogeneous catalyst[J]. Journal of Colloid and Interface Science,2015,448:460-466.
[48] Xiu Zhiliang,Wu Yongzhong,Hao Xiaopeng,et al. Graphene ox-idewrappedAg3PO4 sub-microparticleswithhighlyenhanced photo-catalytic activity and stability under visible light irradiation[J]. Materials Research Bulletin,2014,59:192-198.
[49] Safarpour M,Khataee A,Vatanpour V. Thin film nanocomposite reverse osmosis membrane modified by reduced graphene oxide/ TiO2 with improved desalination performance [J].Journal of Membrane Science,2015,489:43-54.
[50] Lee J,Chae H R,Won Y J,et al. Graphene oxide nanoplatelets composite membrane with hydrophilic and antifouling properties for wastewater treatment[J]. Journal of Membrane Science,2013, 448:223-230.
[51] Guo Haiying,Jiao Tifeng,Zhang Qingrui,et al. Preparation of graphene oxide-based hydrogels as efficient dye adsorbents for wastewatertreatmen[t J].NanoscaleResearchLetters,2015,10:272.
[52] Huang K,Zhao X S,Li Y F,et al. Self-assembled ZnGa2O4-RGO nanocomposites and their enhanced adsorption and photocatalytic performance in water treatment[J]. Materials Research Bulletin, 2014,60:453-456.
[53] Musico Y L F,Santos C M,Dalida M L P,et al. Surface modifica-tion of membrane filters using graphene and graphene oxide-based nanomaterials for bacterial inactivation and removal[J]. Acs Sus-tainable Chemistry & Engineering,2014,2(7):1559-1565.
[54] Cui Wei,Ji Jin,Cai Yifeng et al. Robust,anti-fatigue,and self-healing graphene oxide/hydrophobically associated composite hydrogels and their use as recyclable adsorbents for dye wastewater treatment[J]. Journal of Materials Chemistry A,2015,3 (33):17445-17458. |