Beijing Computational Science Research Center, Beijing, 100193, P. R. China.
Phys Chem Chem Phys. 2018 Jul 4;20(26):17658-17665. doi: 10.1039/c8cp02648c.
We have used two-photon photoemission (2PPE) spectroscopy and first-principles density functional theory calculations to investigate the electronic structure and photoabsorption of the reduced anatase TiO2(101) and rutile TiO2(110) surfaces. 2PPE measurements on anatase (101) show an excited resonance induced by reduced Ti3+ species centered around 2.5 eV above the Fermi level (EF). While this state is similar to that observed on the rutile (110) surface, the intensity of the 2PPE peak is much weaker. The computed oscillator strengths of the transitions from the occupied gap states to the empty states in the conduction band show peaks between 2.0 and 3.0 eV above the conduction band minimum (CBM) on both surfaces, confirming the presence of empty Ti3+ resonances at these energies. Although the crystal field environment of Ti ions is octahedral in both rutile and anatase, Ti3+ ions exhibit distinct d orbital splittings due to different distortions of the TiO6 units. This affects the directions of the transition dipoles from the gap states to the conduction band, explaining the polarization dependence of the 2PPE signal in the two materials. Our results also show that the Ti3+ induced states in the band gap are shallower in anatase than in rutile. The d → d transitions from the occupied gap states to the empty Ti3+ excited states in anatase can occur at energies well below 3 eV, consistent with the observed visible-light photocatalytic activity of Ti3+ self-doped anatase.
我们使用双光子光电子能谱(2PPE)光谱和第一性原理密度泛函理论计算研究了还原锐钛矿 TiO2(101) 和金红石 TiO2(110)表面的电子结构和光吸收。在锐钛矿(101)上的 2PPE 测量显示,在费米能级(EF)上方 2.5 eV 左右,由还原 Ti3+物种引起的激发共振。虽然该状态与在金红石(110)表面上观察到的状态相似,但 2PPE 峰的强度要弱得多。从占据的带隙态到导带中的空态的跃迁的计算振子强度在两个表面上都在导带最小值(CBM)上方 2.0 和 3.0 eV 之间显示出峰值,证实了在这些能量处存在空 Ti3+共振。尽管金红石和锐钛矿中的 Ti 离子的晶体场环境都是八面体,但由于 TiO6 单元的不同变形,Ti3+离子表现出明显的 d 轨道分裂。这影响了从带隙态到导带的跃迁偶极子的方向,解释了两种材料中 2PPE 信号的偏振依赖性。我们的结果还表明,在锐钛矿中,带隙中 Ti3+诱导的态比金红石中浅。占据的带隙态到空 Ti3+激发态的 d→d 跃迁可以在低于 3 eV 的能量下发生,与观察到的 Ti3+自掺杂锐钛矿的可见光光催化活性一致。