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Effect of Ru Rh Mo and Pd Adsorption on the Electronic and Optical Properties of Anatase TiO2(101): A DFT Investigation

机译:钌铑钼和钯吸附对锐钛矿型TiO2(101)的电子和光学性质的影响:DFT研究

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摘要

Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalytic activity of photocatalytic efficiency of titanium dioxide (TiO2), favoring the extension of its optical absorption spectrum and the efficiency of hydrogen generation. To investigate the possible mechanism causing potential improvement of photocatalytic activity, the electronic and optical properties of the anatase TiO2(101) plane with different adsorbed metal atom have been theoretically calculated through density functional theory (DFT) method. Adsorption of Pd and Ru atoms increases the delocalization of the density of states, with an impurity state near the Fermi level. Moreover, the investigated adsorbed metal atoms (Mo, Pd, Ru, Rh) narrow the band gap of anatase TiO2, thus enhancing the probability of photoactivation by visible light. The orbital hybridization of the d orbit from the adsorbed metal atom and the p orbit from the O of the defect site increases the Schottky barrier of the electronic structure.
机译:吸附的金属原子和掺杂在TiO2上的金属可有效增强二氧化钛(TiO2)的光催化效率的光学和光催化活性,有利于扩展其光吸收光谱和氢的产生效率。为了研究可能导致光催化活性提高的机制,通过密度泛函理论(DFT)方法从理论上计算了具有不同吸附金属原子的锐钛矿型TiO2(101)平面的电子和光学性质。 Pd和Ru原子的吸附会增加态密度的离域化,而杂质态接近费米能级。此外,研究的吸附金属原子(Mo,Pd,Ru,Rh)使锐钛矿型TiO2的带隙变窄,从而提高了可见光光活化的可能性。来自被吸附的金属原子的d轨道和来自缺陷部位O的p轨道的轨道杂化增加了电子结构的肖特基势垒。

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