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复合纳米Fe2O3/TiO2的制备、表征及光催化活性

Preparation, Characterization and Photocatalytic Reactivity of Coupled Fe2O3/TiO2 Nanometer Powder

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【作者】 徐悦华古国榜陈小泉李新军

【Author】 Xu Yue_hua 1 Gu Guo_bang 1 Chen Xiao_quan 1 Li Xin_jun 2(1. College of Chemical Engineering, South China Univ. of Tech., Guangahou 510640, China; 2. Guangzhou Institute of Energy Conversion, the Chinese Academy of Sciences, Guangzhou 510070, China

【机构】 华南理工大学化工学院中国科学院广州能源研究所 广东广州510640广东广州510640广东广州510070

【摘要】 采用将TiO2 加入Fe(OH ) 3 胶体中的方法制得复合的Fe2 O3 /TiO2 纳米粒子 .以光催化降解甲胺磷研究其光催化活性 ,并通过XRD、TEM、DRS等分析方法 ,探讨了影响其光催化活性的原因 .结果表明 ,Fe2 O3 的复合量对Fe2 O3 /TiO2 的活性影响很大 ,当n(Fe)∶n(Ti) <0 .3%时 ,复合物Fe2 O3 /TiO2 的光催化活性大于TiO2 ,最佳的复合量为0 .2 % .当复合量大于 0 .5 %时 ,复合物Fe2 O3 /TiO2 的光催化活性低于TiO2 .锻烧温度及锻烧时间对复合物Fe2 O3 /TiO2 光催化活性均有影响 .用XRD确定掺杂前后TiO2 的晶型均为锐钛矿型 ,当复合量大于 0 .7%时才能看到Fe2 O3 的衍射峰 .TEM照片表明 ,由于复合量小 ,复合前后颗粒直径和晶粒直径基本一致 .反射率光谱图表明 ,在 36 0~ 6 5 0nm范围内复合物Fe2 O3 /TiO2 吸收光的性能比TiO2 好 ,亦即增强了对可见光的吸收

【Abstract】 Coupled Fe 2O 3/TiO 2 nanometer powders were prepared by adding TiO 2 in Fe(OH) 3 colloid, the photocatalytic reactivity was characterized by the photocatalytic degradation of methamidophos, and Fe 2O 3/TiO 2 was studied by XRD,TEM and DRS in this paper. It was found that when n (Fe)∶ n (Ti) was less than 0.3%,the photocatalytic reactivity was higher than that of TiO 2, and the best amount of n (Fe)∶ n (Ti) was 0.2%. When n (Fe)∶ n (Ti) was more than 0.5%,the photocatalytic reactivity of Fe 2O 3/TiO 2 was lower than that of TiO 2. The temperature and time of annealing affected the photocatalytic reactivity of Fe 2O 3_TiO 2. The particle grew when the time of annealing increased, so its photocatalytic reactivity decreased. The crystalline of TiO 2 was confirmed to be anatase both before and after being coupled by XRD, when n (Fe)∶ n (Ti) was more than 0.7%, the diffraction of Fe 2O 3 only could be observed. TEM photographs showed that the diameter of particle and crystal of Fe 2O 3/TiO 2 and TiO 2 were about the same. It was shown that the light absorption of Fe 2O 3/TiO 2 in the range of 360~650 nm was improved by DRS, that was to increase the absorption of the visible light.

  • 【文献出处】 华南理工大学学报(自然科学版) ,Journal of South China University of Technology(Natural Science) , 编辑部邮箱 ,2001年11期
  • 【分类号】O643.3
  • 【被引频次】89
  • 【下载频次】1110
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