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The electron structure and photocatalytic activity of Ti(IV) doped Bi_2O_3

查看全文 作  者:YIN [1]LiFeng;NIU [1]JunFeng;SHEN [1]ZhenYao;SUN [2]Ying 高影响力作者 机构地区:[1]State Key Laboratory of Water Environment Simulation; School of Environment, Beijing Normal University, Beijing 100875, China;[2]College of Science, China Agricultural University, Beijing 100193, China高影响力机构 出  处:《Science China Chemistry》索引2011年第54卷第1期,共6页高影响力期刊 基  金:supported by the National High Technology Research and Development Program (863 program, 2006AA06Z323);National Key Technology R&D Program (2008BAC32B06-3) of China;special fund of State Key Laboratory of Water Environment Simulation (08ESPCT-Z) 摘  要:Density functional theory (DFT) plays a significant role in the development of visible light responsive photocatalysts.Based on the first-principles plane-wave ultrasoft pseudopotential (USPP) method,the crystal structures of α,β,γ,and δ-Bi2O3 were optimally calculated for the total density of states (TDOS) and the partial density of states (PDOS) of Bi,O atoms.The calculation for Ti(IV) doped Bi2O3 supercell was carried out.The effects of Ti(IV)-doping on the electron structures and light absorption properties of various Bi2O3 were analyzed.The results showed that Ti 3d orbital appeared in the forbidden band of Bi2O3 and hybridized with O 2p,Bi 6p orbitals.The narrowed band gap (Eg) and red-shift of light absorption edge are responsible for the enhanced photocatalytic activity of Bi2O3.The β-Bi2O3 and Ti-doped β-Bi2O3 were prepared by a hydrothermal synthesis method.The improvement of the photocatalytic activity of Bi2O3 has also been verified by the characteristics of the UV-vis diffuse reflection spectrum and the experimental evaluation of the photocatalytic degradation of crystal violet in aqueous solution. 关 键 词:钛(Ⅳ) 电子结构 光催化活性 掺铋 密度泛函理论 BI2O3 密度计算 3d轨道
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