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首页> 外文期刊>Computation >Effect of Isotopic Substitution on Elementary Processes in Dye-Sensitized Solar Cells: Deuterated Amino-Phenyl Acid Dyes on TiO2
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Effect of Isotopic Substitution on Elementary Processes in Dye-Sensitized Solar Cells: Deuterated Amino-Phenyl Acid Dyes on TiO2

机译:同位素取代对染料敏化太阳能电池基本过程的影响:TiO 2 上的氘代氨基苯甲酸染料

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We present the first computational study of the effects of isotopic substitution on the operation of dye-sensitized solar cells. Ab initio molecular dynamics is used to study the effect of deuteration on light absorption, dye adsorption dynamics, the averaged over vibrations driving force to injection (∆Gi) and regeneration (∆Gr), as well as on promotion of electron back-donation in dyes NK1 (2E,4E-2-cyano-5-(4-dimethylaminophenyl)penta-2,4-dienoic acid) and NK7 (2E,4E-2-cyano-5-(4-diphenylaminophenyl)penta-2,4-dienoic acid) adsorbed in monodentate molecular and bidentate bridging dissociative configurations on the anatase (101) surface of TiO2. Deuteration causes a red shift of the absorption spectrum of the dye/TiO2 complex by about 5% (dozens of nm), which can noticeably affect the overlap with the solar spectrum in real cells. The dynamics effect on the driving force to injection and recombination (the difference between the averaged ∆Gi,r and ∆Gi,requil at the equilibrium configuration) is strong, yet there is surprisingly little isotopic effect: the average driving force to injection ∆Gi and to regeneration ∆Gr changes by only about 10 meV upon deuteration. The nuclear dynamics enhance recombination to the dye ground state due to the approach of the electron-donating group to TiO2, yet this effect is similar for deuterated and non-deuterated dyes. We conclude that the nuclear dynamics of the C-H(D) bonds, mostly affected by deuteration, might not be important for the operation of photoelectrochemical cells based on organic dyes. As the expectation value of the ground state energy is higher than its optimum geometry value (by up to 0.1 eV in the present case), nuclear motions will affect dye regeneration by recently proposed redox shuttle-dye combinations operating at low driving forces.
机译:我们目前进行的同位素取代对染料敏化太阳能电池操作的影响的第一个计算研究。从头算分子动力学用于研究氘化对光吸收,染料吸附动力学,平均振动驱动力(ΔG i )和再生(ΔG r < / sub>),以及促进染料NK1(2E,4E-2-氰基-5-(4-二甲基氨基苯基)戊-2,4-二烯酸)和NK7(2E,4E-吸附在TiO 2 的锐钛矿(101)表面上的单齿分子和双齿桥接解离构型的2-氰基-5-(4-二苯基氨基苯基)戊-2,4-二烯酸。氘化导致染料/ TiO 2 络合物的吸收光谱发生约5%(几十纳米)的红移,这可能会明显影响实际电池中与太阳光谱的重叠。动力学对注射和复合驱动力的影响(平均<∆G i,r i,r equil 处于平衡构型),但同位素效应却出乎意料地很少:注入<∆G i r 的平均驱动力>氘化时仅变化约10 meV。由于给电子基团接近TiO 2 ,核动力学增强了向染料基态的重组,但是对于氘代和非氘代染料,这种效应是相似的。我们得出结论,主要受氘影响的C-H(D)键的核动力学对于基于有机染料的光电化学电池的操作可能并不重要。由于基态能量的期望值高于其最佳几何值(在当前情况下高达0.1 eV),因此核运动将通过最近提出的以低驱动力运行的氧化还原穿梭染料组合影响染料再生。

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