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Ru-TiO_2光电极的研制与性能研究 被引量:2

Preparation and Characterization of Ru-TiO_2 Photoelectrode
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摘要 采用阳极氧化法制备Ru-TiO2光电极,通过紫外-可见漫反射吸收(UV-Vis-DRS)、X-射线衍射(XRD)和交流阻抗(EIS)对光电极的性能进行表征,探讨了氧化电压、煅烧温度、钌掺杂量的影响。结果表明:Ru掺杂后TiO2结晶更完全,光吸收强度明显提高。在HF电解液中,阳极氧化制备Ru-TiO2光电极的最佳条件为:氧化电压为20V,热处理温度600℃,钌掺杂量1%。不同条件Ru-TiO2光电极对甲基橙溶液进行脱色效果依次为:光电催化>光催化>电催化。 Ru-TiO2photoelectrodes were prepared by anodization and characterized by UV-Vis diffuse reflectance spectrum (UV-Vis-DRS),X-ray diffraction (XRD)and electrochemical impedance spectroseopy(EIS).The effects of anodizing voltage,heat treatment and addition of ruthenium were discussed.The results showed that TiO2was completely crystallized by Ru-doping,and the absorption intensity was accordingly increased.In HF electrolyte,Ru-TiO2photoelectrodes were obtained under the optimal preparing conditions of anodizing voltage of 20V,heat treatment at 600℃,and addition of 1%ruthenium.The ability to decolorize methyl orange solution under different conditions was as follows:photoelectrocatalysis〉photocatalysis〉electrocatalysis.
出处 《分析科学学报》 CAS CSCD 北大核心 2010年第6期645-648,共4页 Journal of Analytical Science
基金 教育部博士学科点专项基金(No.20096118110008) 陕西省教育厅专项基金(No.09JK672) 西安市科技创新支撑计划(No.CXY09025(1)) 西安理工大学优秀博士学位论文研究基金(602-210804)
关键词 Ru-TiO2光电极 阳极氧化 光电催化 Ru-TiO2photoelectrode Anodization Photoelectrocatalysis
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  • 1肖兴富,李文奇,刘娜,杨旭光.富营养化水体中蓝藻毒素的危害及其控制[J].中国水利水电科学研究院学报,2005,3(2):116-123. 被引量:29
  • 2庄惠芳,赖跃坤,李静,孙岚,林昌健.氮掺杂TiO_2纳米管阵列的制备及其可见光光电催化活性研究[J].电化学,2007,13(3):284-287. 被引量:11
  • 3Angeline K. P. M. , Ellie E. Biotransformation of the cya- nobacterial hepatotoxin Microcystin-LR as determined by I-IPLC and protein phosphatase bioassay. Environment Sci- ence & Technology, 1995, 29 ( 1 ) : 242-246.
  • 4Liu L. , Lawton L. A. , Bahnemann D. W. , et al. The photocatalytic decomposition of microcystin-LR using se- lected titanium dioxide materials. Chemosphere, 2009, 76 (4) : 549-553.
  • 5张招贤,赵国鹏,罗小军,等.钛电极学导论.北京:冶金工业出版社,2008.17-34.
  • 6Pelegrini R. T. , Freire R. S. , Duran N. , et al. Photoas- sisted electrochemical degradation of organic pollutants on a DSA type oxide electrode : Process test for a phenol synthet- ic solution and its application for the E1 bleach kraft mill effluent. Environment Science & Technology, 2001, 35 (13) : 2849-2853.
  • 7AlvesP. A. , MalpassG. R. P. , JohansenH. D. , etal. Photo-assisted electrochemical degradation of real textile wastewater. Water Science & Technology, 2010, 61(2): 491-498.
  • 8Malpass G. R. P. , Miwa D. W. , MiwaA. C. P. , et al. Photo-assisted electrochemical oxidation of atrazine on a commercial Ti/Ru03 Ti0.7 02 DSA electrode. Environment Science & Technology, 2007, 41 (20) : 7120-7125.
  • 9Malpass G. R. P. , MiwaD. W. , MiwaA. C. P. , et al. Study of photo-assisted electrochemical degradation of car- baryl at dimensionally stable anodes (DSA). Journal of.Hazardous Materials, 2009, 167 ( 1-3 ) : 224-229.
  • 10Kim D. H. , Anderson M. A. Photoelectrocatalytic degra- dation of formic acid using a porous titanium dioxide thin- film electrode. Environment Science & Technology, 1994, 28(3) : 479-483.

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