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Synergistic effects of Bi/S codoping on visible light-activated anatase TiO2 photocatalysts from first principles

机译:从第一原理出发,Bi / S共掺杂对可见光活化的锐钛矿型TiO2光催化剂的协同作用

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摘要

The electronic properties and photocatalytic activity of S and/or Bi-doped anatase TiO2 are investigated by first-principles density functional theory calculations. For S-doped TiO2, S 3p states locate above the top of the valence band and mix with O 2p states, leading to band gap narrowing. For Bi-doped anatase, the energy levels of the impurity Bi 6s states lie below the bottom of the conduction band while the Fermi level EF lies above the gap states, indicating the gap states are fully occupied. The transition from Bi 6s to Ti 3d states is responsible for a red-shift of the visible light absorption edge. In Bi/S–doped TiO2, both S 3p acceptor states and partially occupied Bi 6s donor states hybridized with S 3p appear simultaneously; this observation suggests that photocatalytic efficiency would be improved significantly due to greater separation of electron-hole pairs. These findings present a reasonable explanation of recent experimental results.
机译:通过第一性原理密度泛函理论计算研究了S和/或Bi掺杂的锐钛矿型TiO2的电子性质和光催化活性。对于掺S的TiO2,S 3p态位于价带的上方,并与O 2p态混合,导致带隙变窄。对于Bi掺杂的锐钛矿,杂质Bi 6s态的能级位于导带的底部以下,而费米能级EF处于能隙状态以上,表明能级状态被完全占据。从Bi 6s到Ti 3d态的转变导致可见光吸收边缘发生红移。在Bi / S掺杂的TiO2中,S 3p受体态和与S 3p杂化的部分占据的Bi 6s供体态同时出现。该观察结果表明,由于更大的电子-空穴对间距,光催化效率将得到显着提高。这些发现为最近的实验结果提供了合理的解释。

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