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TiO2纳米微粉及生物染料的光催化降解

Nanoparticles TiO2 and the photo-catalyst degradations of the biological dyes

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【作者】 胡季帆隋振贵陆宏良秦宏伟范久峰王建国刘强

【Author】 HU Jifan1,SHi Zhengui1,LU Hongliang1,QIN Hongwei1,FAN Jiufeng1,WANG Jianguo2,LIU Qiang2(1.Department of Physics, Shandong University, Ji′nan 250100, China;2.Research Laboratory,Henan Haitian Applied Materials co., Zhengzhou 450008,China )

【机构】 山东大学物理系河南海天应用材料有限公司研究部河南海天应用材料有限公司研究部 山东济南250100山东济南250100河南郑州450008河南郑州450008

【摘要】 基于过氧络合热分解法制备了平均粒径为6~7nm的TiO2微粒,并研究了对生物染料亚甲蓝、孔雀绿溶液的光催化降解作用。亚甲蓝溶液的紫外可见光谱的吸收峰(峰位波长663~646nm以及292~288nm)的吸光度随光催化时间的加长而明显减弱。孔雀绿溶液的紫外可见光谱的吸收峰(峰位波长617~612nm)的吸光度随光催化时间的加长也减弱。但是位于紫外光区256nm左右的吸收峰的吸光度却大幅度增强。

【Abstract】 Based on the method of peroxidecomplex heat decomposition, the nanoparticles of TiO2 with particle size of 6~7nm were prepared. The photo-catalyst degradations of the biological dyes solution of methylene blue and the C48H50N4O4·2H2C2O4 were also investigated. The absorbance of the absorption peak (663~646nm and 292~288nm) of the ultravioletvisible spectra for methylene blue solution decreases evidently with increasing of the photocatalyst time. However, for the solution C48H50N4O4·2H2C2O4, with increasing photocatalyst time, the absorbance of the peak 617~612nm in visible range of the ultravioletvisible spectra decreases, but increases greatly for the absorption peak 256nm in ultraviolet range. 

【关键词】 纳米材料TiO2光催化降解
【Key words】 nanometer materialsTiO2photo-catalyst degradation
  • 【文献出处】 功能材料 ,Journal of Functional Materials , 编辑部邮箱 ,2003年03期
  • 【分类号】TB383
  • 【被引频次】11
  • 【下载频次】153
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