[1] Kuang Q,Yang S.Template synthesis of single-crystal-like porous SrTiO nanocube assemblies and their enhanced photocatalytic hydrogen evolution[J].Acs Applied Materials & Interfaces,2013,5(9):3683-3690.
[2] 王梦幻,张汀兰,曾雄丰,等.TiO2柱撑光催化材料的制备及应用进展[J].化工新型材料,2017,45(10):8-10.
[3] Yan L,Chen Z M,Yang G S.Synthesis and characterization of polyamide-6/graphite oxide nanocomposites[J].Journal of Materials Science,2011,46(4):882-888.
[4] Shi X,Lu J,Yin H,et al.A biomimetic sensor with signal enhancement of ferriferrous oxide-reduced graphene oxide nanocomposites for ultratrace levels quantification of methamidophos or omethoate in vegetables[J].Food Analytical Methods,2016,10(4):910-920.
[5] Raliya R,Avery C,Chakrabarti S,et al.Photocatalytic degradation of methyl orange dye by pristine titanium dioxide,zinc oxide,and graphene oxide nanostructures and their composites under visible light irradiation[J].Applied Nanoscience,2017,7(5):253-259.
[6] Liu I T,Hon M H,Teoh L G.The preparation,characterization and photocatalytic activity of radical-shaped CeO2/ZnO microstructures[J].Ceramics International,2014,40(3):4019-4024.
[7] Saravanan R,Karthikeyan N,Govindan S,et al.Photocatalytic degradation of organic dyes using ZnO/CeO2 nanocomp osite material under visible light[J].Advanced Materials Research,2012,584(584):381-385.
[8] Lv Z,Zhong Q,Ou M.Utilizing peroxide as precursor for the synthesis of CeO2/ZnO composite oxide with enhanced photocatalytic activity[J].Applied Surface Science,2016,376(15):91-96.
[9] Subhan M A,Uddin N,Sarker P,et al.Synthesis,characterization,low temperature solid state PL and photocatalytic activities of Ag2O/CeO2/ZnO nanocomposite[J].Spectrochimica Acta Part A Molecular & Biomolecular Spectroscopy,2015,151(3):56-63.
[10] Kaur J,Bhukal S,Gupta K,et al.Nanocomposite of CeO2,and ZnO:an active material for the treatment of contaminated water[J].Materials Chemistry & Physics,2016,177(6):512-520.
[11] Li C,Zhu J,Bi H,et al.A controllable synthetic route for preparing graphene-Cu and graphene-Cu2O nanocomposites using graphene oxide-CuO as a precursor[J].Journal of Wuhan University of Technology-Mater Sci Ed,2015,30(5):947-950.
[12] Jia X,Lian D,Shi B,et al.Facile synthesis of α-Fe2O3@graphene oxide nanocoposites for enhanced gas-sensing performance to ethanol[J].Journal of Materials Science Materials in Electronics,2017,28(16):12070-12079.
[13] Li J,Zhang Q,Zeng L,et al.Synthesis,characterization and photocatalytic study of graphene oxide and cerium co-doped in TiO2[J].Applied Physics A,2016,122(2):51-57.
[14] Ji Z,Feng L,Kong L,et al.Synthesis of GO-AgIO4,nanocomposites with enhanced photocatalytic efficiency in the degradation of organic pollutants[J].Journal of Materials Science,2017,52(10):6100-6110.
[15] Mardiroosi A,Mahjoub A R,Fakhri H.Efficient visible light photocatalytic activity based on magnetic graphene oxide decorated ZnO/NiO[J].Journal of Materials Science Materials in Electronics,2017,28(16):11722-11732.
[16] 薛婷婷,张欢,刘守清.石墨烯-氧化铈杂化材料的合成及可见光催化降解氨氮[J].功能材料,2017,48(3):3218-3222.
[17] Almeida N A,Martins P M,Teixeira S,et al.TiO2/graphene oxide immobilized in P(VDF-TrFE) electrospun membranes with enhanced visible-light-induced photocatalytic performance[J].Journal of Materials Science,2016,51(14):6974-6986.
[18] Zhang Y,Pan C.TiO2/graphene composite from thermal reaction of graphene oxide and its photocatalytic activity in visible light[J].Journal of Materials Science,2011,46(8):2622-2626.
[19] Zhao M,Sun Y,Lv J,et al.Enhanced photocatalytic performances of ZnO with Na doping and graphene oxide quantum dots[J].Journal of Materials Science Materials in Electronics,2016,27(9):9131-9135.
[20] Ribao P,Rivero M J,Ortiz I.TiO2 structures doped with noble metals and/or graphene oxide to improve the photocatalytic degradation of dichloroacetic acid[J].Environmental Science & Pollution Research International,2017,24(14):12628-12637.
[21] Yan Q,Xie X,Lin C,et al.Synthesis of graphene oxide/Ag3PO4 composite with enhanced visible-light photocatalytic activity[J].Journal of Materials Science Materials in Electronics,2017,28(22):16696-16703.
基金资助
辽宁省自然科学基金(20092181);中央高校基本科研业务费专项基金弱光非线性光子学教育部重点实验室(南开大学)开放基金项目(OS18-2)