首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Dispersion and Solvation Effects on the Structure and Dynamics of N719 Adsorbed to Anatase Titania (101) Surfaces in Room- Temperature Ionic Liquids: An ab Initio Molecular Simulation Study
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Dispersion and Solvation Effects on the Structure and Dynamics of N719 Adsorbed to Anatase Titania (101) Surfaces in Room- Temperature Ionic Liquids: An ab Initio Molecular Simulation Study

机译:分散和溶剂化对室温离子液体中锐钛矿型二氧化钛(101)表面吸附的N719结构和动力学的影响:从头算分子模拟研究

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摘要

Ab initio, density functional theory (DFT)-based molecular dynamics (MD) has been carried out to investigate the effect of explicit solvation on the dynamical and structural properties of a [bmim][NTf2] room-temperature ionic liquid (RTIL), solvating a N719 sensitizing dye adsorbed onto an anatase titania (101) surface. The effect of explicit dispersion on the properties of this dye-sensitized solar cell (DSC) interface has also been studied. Upon inclusion of dispersion interactions in simulations of the solvated system, the average separation between the cations and anions decreases by 0.6 angstrom; the mean distance between the cations and the surface decreases by about 0.5 angstrom; and the layering of the RTIL is significantly altered in the first layer surrounding the dye, with the cation being on average 1.5 angstrom further from the center of the dye. Inclusion of dispersion effects when a solvent is not explicitly included (to dampen longer-range interactions) can result in unphysical kinking of the adsorbed dyes configuration. The inclusion of solvent shifts the HOMO and LUMO levels of the titania surface by +3 eV. At this interface, the interplay between the effects of dispersion and solvation combines in ways that are often subtle, such as enhancement or inhibition of specific vibrational modes.
机译:从头开始,已经进行了基于密度泛函理论(DFT)的分子动力学(MD),以研究显式溶剂化对[bmim] [NTf2]室温离子液体(RTIL)的动力学和结构性质的影响,溶剂化吸附在锐钛型二氧化钛(101)表面的N719增感染料。还研究了显式分散对其染料敏化太阳能电池(DSC)界面性能的影响。在溶剂化体系的模拟中包括色散相互作用后,阳离子和阴离子之间的平均间隔降低了0.6埃;阳离子与表面之间的平均距离减少了约0.5埃; RTIL的层在染料周围的第一层中发生了显着变化,阳离子离染料中心的平均距离为1.5埃。当未明确包括溶剂(以抑制较长距离的相互作用)时,包含分散效应会导致吸附的染料构型异常弯曲。包含溶剂会使二氧化钛表面的HOMO和LUMO含量增加+3 eV。在此界面上,分散作用和溶剂化作用之间的相互作用以通常很细微的方式组合在一起,例如增强或抑制特定的振动模式。

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