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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ab Initio Molecular Dynamics Studies of the Effect of Solvation by Room-Temperature Ionic Liquids on the Vibrational Properties of a N719-Chromophore/Titania Interface
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Ab Initio Molecular Dynamics Studies of the Effect of Solvation by Room-Temperature Ionic Liquids on the Vibrational Properties of a N719-Chromophore/Titania Interface

机译:AB Initio分子动力学研究通过室温离子液体对N719-发色团/二氧化钛界面振动性能的影响

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The accurate ab initio modeling of prototypical and well-representative photoactive interfaces for candidate dye-sensitized solar cells (DSCs) is a perennial problem in physical chemistry. To this end, the use of ab initio density functional theory-based molecular dynamics (AIMD) has been studied here to investigate the effect the choice of functional has on a system mimicking the essential workings of a DSC: the energetic properties of a [bmim](+)[NTf2](-) room-temperature ionic liquid (RTIL) solvating an N719-sensitizing dye adsorbed onto an anatase-titania (101) surface were scrutinized. In so doing, we glean important insights into how using an RTIL as electrolytic hole acceptor alters and modulates the dynamical properties of the widely used N719 dye. A fully crossed study has been carried out comparing the Becke-Lee-Yang-Parr (BLYP) and Perdew-Burke-Ernzerhof (PBE) functionals, both unsolvated and solvated by the RTIL, both with and without Grimme D3 dispersion corrections. Also, vibrational spectra for the photoactive interface in the DSC configuration were calculated by means of Fourier-transforming atomic mass-weighted velocity autocorrelation functions. The ab initio vibrational spectra were compared to high-quality experimental data and against each other; the effects of various methodological choices on the vibrational spectra were also studied, with PBE generally performing best in producing spectra, which matched the experimental frequency modes typically expected.
机译:用于候选染料敏化太阳能电池(DSCs)的原型和代表性光活性界面的精确AB初始模型是物理化学的常年问题。为此,这里研究了AB Initio密度泛函理论的分子动力学(AIMD)以研究效果对模仿DSC的基本工作的功能的效果具有:[BMIM的能量特性](+)[NTF2]( - )室温离子液体(RTIL)溶解吸附在锐钛矿 - 二氧化钛(101)表面上的N719敏化染料进行仔细审查。在这样做时,我们将重要的见解进入如何使用RTIL作为电解孔受体改变并调节广泛使用的N719染料的动态性质。已经进行了完全交叉的研究,比较了Becke-Lee-Yang-Parr(Blyp)和Perdew-Burke-Ernzerhof(PBE)功能,包括RTIL,无论是带有的,都没有GRIME D3色散校正。此外,通过傅里叶变换原子重量速度自相关函数计算DSC配置中的光活性接口的振动光谱。将AB Initio振动光谱与高质量的实验数据和互相进行比较;还研究了各种方法论对振动光谱的影响,PBE通常在生产光谱中最佳地进行,该光谱匹配通常预期的实验频率模式。

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