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从密度泛函理论出发,可靠且计算成本低廉地预测(TiO)(10 ≤ n ≤ 563)纳米粒子的能隙。

Reliable and computationally affordable prediction of the energy gap of (TiO) (10 ≤ n ≤ 563) nanoparticles from density functional theory.

机构信息

Departament de Ciència de Materials i Química Física & Institut de Química Teòrica i Computacional (IQTCUB), Universitat de Barcelona. c/Martí i Franquès 1, 08028 Barcelona, Spain.

出版信息

Phys Chem Chem Phys. 2018 Jul 18;20(28):18907-18911. doi: 10.1039/c8cp03582b.

DOI:10.1039/c8cp03582b
PMID:29971291
Abstract

The optical gap (Ogap) of a set of (TiO2)n nanoclusters and nanoparticles with n = 10-563 and different morphologies such as spherical, octahedral, lamellar, or tubular finite structures is investigated based on a relativistic all-electron description along with a numerical atomic centered orbital basis set. Two different functionals are used, PBE and PBEx, the former corresponds to a standard implementation of the generalized gradient approximation (GGA) and the latter to a hybrid functional with 12.5% of Fock exchange which reproduces the band gap of bulk TiO2 anatase and rutile. It is shown that the inclusion of exchange Fock in the PBE functional promotes a systematic energy gap opening of 1.25 eV relative to the PBE values. Remarkably, a linear correlation is found between PBEx and PBE Ogap calculated values with concomitant similar correlations for the HOMO and LUMO orbital energies. However, it appears that PBEx induces a larger downshift on the HOMO orbital than the upshift observed on the LUMO one. The fact that the PBEx hybrid functional was shown to reproduce the experimental energy gaps of stoichiometric and reduced TiO2 bulk phases leads to a suitable and practical way to successfully estimate Ogap of TiO2 nanoparticles containing up to thousands of atoms with PBEx precision from computationally affordable PBE calculations.

摘要

基于相对论全电子描述和数值原子中心轨道基组,研究了一组(TiO2)n 纳米团簇和纳米粒子的光学带隙(Ogap),其中 n = 10-563,具有不同的形态,如球形、八面体、层状或管状有限结构。使用了两种不同的泛函,PBE 和 PBEx,前者对应于广义梯度近似(GGA)的标准实现,后者对应于具有 12.5% Fock 交换的混合泛函,它再现了体相 TiO2 锐钛矿和金红石的能带隙。结果表明,在 PBE 泛函中包含 Fock 交换会导致能量带隙相对于 PBE 值打开 1.25 eV。值得注意的是,发现 PBEx 和 PBE Ogap 计算值之间存在线性相关性,同时 HOMO 和 LUMO 轨道能量也存在类似的相关性。然而,似乎 PBEx 诱导 HOMO 轨道的下移大于 LUMO 轨道的上移。事实证明,PBEx 混合泛函成功再现了化学计量和还原 TiO2 体相的实验能隙,这为从计算上负担得起的 PBE 计算中以 PBEx 的精度成功估计包含数千个原子的 TiO2 纳米粒子的 Ogap 提供了一种合适且实用的方法。

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