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First Principles Study on the Electronic Structure and Optical Property of Nd-C Codoped Anatase TiO 2

机译:Nd-C共掺杂锐钛矿型TiO 2的电子结构和光学性质的第一性原理研究

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Band structures, density of states, and absorption spectra of pure, Nd doped, C doped, and Nd-C codoped TiO2 are calculated using first-principles based on density functional theory. Calculation results show that Nd 4f state forms empty impurity energy levels below conduction band, and C 2p state together with Nd 2f state forms occupied impurity energy levels with higher density than that of single doped TiO2 above valence band. Consequently, more electrons in occupied energy levels can be excited by visible light to empty Nd 4f states rather than Ti 3d states, resulting in further enhancement of visible light absorption and absorption edge red shift. In addition, the impurity energy levels act as carriers trap centers, thus decreasing the recombination rate of carriers.
机译:使用第一性原理基于密度泛函理论计算纯,Nd掺杂,C掺杂和Nd-C共掺杂的TiO2的能带结构,状态密度和吸收光谱。计算结果表明,Nd 4f态在导带以下形成空的杂质能级,而C 2p态与Nd 2f态形成比价带以上的单掺杂TiO2更高的密度。因此,更多的处于能级的电子可以被可见光激发成空的Nd 4f态而不是Ti 3d态,从而导致可见光吸收和吸收边缘红移进一步增强。另外,杂质能级充当载流子的俘获中心,从而降低了载流子的复合率。

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