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作 者:王勇[1] 张艳[1] 赵亚伟[1] 朱旭辉[1] 徐宝龙[1]
机构地区:[1]烟台大学光电信息科学技术学院,山东烟台264005
出 处:《化工科技》2010年第5期1-4,共4页Science & Technology in Chemical Industry
基 金:国家自然科学基金资助项目(60277023);山东省自然科学基金资助项目(Y2004A11);烟台大学博士后基金资助项目(WL03B15)
摘 要:应用溶胶凝胶法,以尿素、氯化锰和钛酸丁酯为原料制备了纯Ti O2、N掺杂、Mn掺杂及N、Mn共掺杂的Ti O2纳米粉体。采用XRD、SEM、EDS、UV-VIS等分析手段对样品的物相、形貌、成分和吸光性能进行了表征,并且以亚甲基蓝溶液为模拟污染物在阳光下进行了光催化实验。结果表明,样品主要为锐钛矿相二氧化钛及少量的金红石型二氧化钛;样品呈颗粒状,有一定程度的团聚;N掺杂、Mn掺杂及N、Mn共掺杂样品的吸收光谱分别红移至470、440、490 nm;光催化实验表明,在可见光照射下的光催化能力由强到弱依次为N、Mn共掺杂>N掺杂>Mn掺杂>纯Ti O2。The nanometer TiO2 powders with nitrogen doping,manganese doping and nitrogen/manganess co-doping as well as undoped TiO2 were prepared by sol-gel methods using urea.MnCl,and tetrabutyl-titanate as raw materials.The crystal,morphology,composition and spectral absorption properties of the powder were characterized by XRD,SEM,EDS and UV-Vis etc.And photocatalytic experiments were carried out under sunlight with methylene-blue solution as simulated pollutant.The results showed that the samples are mainly anatase titanium dioxide with a small amount of rutile-type titanium dioxide.The samples were made of granulas and agglomeration occurred on the doped ones.In addition the red shifts were found on the doped samples in the UV-Vis spectra and N-doped,Mn-doped and N/Mn-codoped samples shifted to 470,440,490 nm.respectively photocatalytic experimental results showed that the photocatalytic capacity order of the samples is:N/Mn-codoped TiO2N-doped TiO2Mn-doped TiO2pure TiO2 under the sunlight.
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