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Ag_3PO_4的制备及其复合材料研究进展 被引量:2

Development of Preparation of Ag_3PO_4 and Ag_3PO_4 Composites
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摘要 能源与环境已成为当前亟需解决的问题,半导体光催化技术因具有氧化降解有机污染物完全、不产生二次污染、易操作等优点,在环境治理和新能源开发领域成为热点研究课题之一。Ag3PO4因具有高量子效率、可见光响应及较高的光催化效率等特点而引起了广大研究者的关注,并具有广泛的应用前景。本文总结了Ag3PO4的制备方法、不同形貌Ag3PO4的可控合成及其复合材料的研究进展。 It is urgent to solve the energy crisis and environmental problem.The semiconductor photocatalytic technology has been a hot research topic in the field of improvement of environment and development of new energy due to its high photocatalysis efficiency,polution free and easy operation.The silver phosphate has drawn great attention due to its high quantum efficiency,visible light response and photocatalysis efficiency.The silver phosphate has wide application in the future.In the paper,the development of the preparation methods of silver phosphate,the controllable synthesis of silver phosphate with various morphologies and silver phosphate composites were concluded.
作者 李贵佳
出处 《现代技术陶瓷》 CAS 2015年第2期26-30,共5页 Advanced Ceramics
关键词 Ag3PO4 复合材料 制备 光催化 silver phosphate composites preparation photocatalysis
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  • 1吴小园,张汉辉,黄长沧,孙瑞卿,杨齐瑜,林志华.Mn_5(PO_3(OH))_2(PO_4)_2(H_2O)_4的水热合成和光谱研究[J].光谱学与光谱分析,2004,24(6):694-697. 被引量:6
  • 2郑云,潘志明,王心晨.国内光催化研究进展简述(英文)[J].催化学报,2013,34(3):524-535. 被引量:23
  • 3顾达,胡黎明.功能材料[M].北京:化学工业出版社,1997.36-39.
  • 4Asahi R,Morikawa T, Ohwaki T,et al.[J], Science,2001,293(13):269-271.
  • 5Burda C,Lou Y B,Chen X B,et al.[J].Nano Lett,2003,3(8):1049-1051.
  • 6Zhao W,Ma W H, Chen C C,et al.[J].J.Am Chem Soc,2004,126(15),4782-4783.
  • 7Park J H,Kim S,Bard A J,et al.[J].Nano Lett,2006,6(1),24-28.
  • 8Robel I,Kuno M,Kamat P V,et al.[J].J Am Chem Soc,2007,129(14),4136-4137.
  • 9Peter L M, Wijayantha K G U, Riley D J,et al.[J].J PhysChemB, 2003,107(33), 8378-8381.
  • 10Rehman S,Ullah R,Butt A M, et al.[J].Journal of HazardousMaterials,2009,170(30) ,530-551.

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  • 1I.an Y Q, Hu C, Hu X X, et al. Efficient destruction of patho genie bacteria with AgBr/TiO2 under visible light irradiation [J]. Applied Catalysis B: Environmental, 2007, 73 (3/4) : 354- 360.
  • 2Mahsa P,Aziz H Y. Simple and large scale one-pot method for preparation of AgBr-ZnO nanoeomposites as highly efficient vis ible light photocatalyst[J]. Applied Surface Science, 2013,283, (283) : 1080-1088.
  • 3Li T T, He Y M, Lin H J, et al. Synthesis, characterization and photoeatalytie activity of visible light plasmonic photoeatalyst AgBr-SmVO4 [J]. Applied Catalysis B: Environmental, 2013, 138/139(21) :95-103.
  • 4Song L M, Zhang S J, Wu X O, et al. One-step synthesis of com- posite semiconductor AgBr/AgsPaO10 heterojunctions and their photocatalytic activity, kinetic analysis, photocatalytic mecha- nism under visible light radiation [J]. Chemical Engineering Journal,2013,214(1) : 336-342.
  • 5Owais M,Niyaz A M,Bilal M P,et al. Muneer. In-situ anion ex change synthesis of AgBr/Ag2COa hybrids with enhanced visi- ble light photocatalytic activity and improved stability[J]. Jour- nal of Molecular Catalysis A:Chemical,2014,395(395):16-24.
  • 6Cao Y H,Li Q Y,Xing Y Y,et al. In situ anion-exchange syn- thesis and photoeatalytic activity of AgBr/Ag20 heterostruc- ture[J]. Applied Surface Science,2015,341(30) : 190-195.
  • 7Zhu L F, Huang D Q, Ma J F, et ah Fabrication of AgBr/ Ag2CrO4 composites for enhanced visible-light photocatalytic activity[J]. Ceramics International,2015,41(9) :12509-12513.
  • 8Wang B,Gu X Q,Zhao Y L,et al. A comparable study on the photocatalytic activities of AgaPO4, AgBr and AgBr/AgaPO4 hybrid microstructures[J]. Applied Surface Science, 2013, 283 (11) :396-401.
  • 9Cao J, Luo B D, Lin H L, et al. Visible light photocatalytic activ- ity enhancement and mechanism of AgBr/AgaPO4 hybrids for degradation of methyl orange[J]. Journal of Hazardous Materi als,2012,217/218(O) :107-115.
  • 10Zhang J F,Zhang T. Preparation and characterization of highly efficient and stable visible-light-responsive photocatalyst AgBr/ Aga PO4 [J]. Journal of Nanomaterials, Volume 2013, Article ID 565074,11.

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