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首页> 外文期刊>Research on Chemical Intermediates >Tailoring of energy levels in (2Z)-2-cyano-2-[2-[(E)-2-[2-[(E)-2-(p-tolyl)vinyl]thieno[3,2-b]thiophen-5-yl]vinyl]pyran-4-ylidene]acetic acid derivatives via conjugate bridge and fluorination of acceptor units for effective D-pi-A dye-sensitized solar cells: DFT-TDDFT approach
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Tailoring of energy levels in (2Z)-2-cyano-2-[2-[(E)-2-[2-[(E)-2-(p-tolyl)vinyl]thieno[3,2-b]thiophen-5-yl]vinyl]pyran-4-ylidene]acetic acid derivatives via conjugate bridge and fluorination of acceptor units for effective D-pi-A dye-sensitized solar cells: DFT-TDDFT approach

机译:剪裁(2Z)-2-氰基-2- [2 - [(e)-2- [2 - [(e)-2-(对甲苯基)乙烯基] Thieno [3,2-B] 噻吩-5-基]吡喃-4- ylidene]乙酸衍生物通过共轭桥和受体单元的氟化,用于有效的D-PI-A染料敏化太阳能电池:DFT-TDDFT方法

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摘要

Density functional theory (DFT) was employed to investigate the role of fused thiophene and bridged thiophene pi-linkers as well as acceptor unit fluorination in modifying the properties of dye sensitizers for dye-sensitized solar cells (DSSCs). A series of novel (2Z)-2-cyano-2-[2-[(E)-2-[2-[(E)-2-(p-tolyl)vinyl]thieno[3,2-b]thiophen-5-yl]vinyl]pyran-4-ylidene]acetic acid derivatives were simulated using DFT and time-dependent density functional theory to calculate their electronic and optical properties, population analysis, global reactivity index and light harvesting efficiency. The results showed that dyes with bridged thiophene pi-linker have narrower energy bandgap (E (g)) and longer absorption wavelength (lambda (max)) than those with fused thiophene pi-linker. Also, fluorination of the acceptor unit of the dyes enhanced the electron accepting ability of 2-cyano-2-pyran-4-ylidene-acetic acid by lowering the lowest unoccupied molecular orbital (LUMO) energy, which leads to lower E (g), lower chemical hardness (eta), and longer wavelength. Therefore, incorporation of fluorine atoms at the acceptor unit makes the conduction-band potential more favorable, leading to effective charge separation and charge transfer between donor and acceptor.
机译:使用密度函数理论(DFT)来研究融合​​噻吩和桥噻吩pi-接头以及受体单位氟化在改变染料敏化太阳能电池(DSSCs)的染料敏化剂的性能时的作用。一系列新颖(2Z)-2-氰基-2- [2 - [(e)-2- [2 - [(e)-2-(p-甲苯基)乙烯基]噻吩[3,2-B]噻吩使用DFT和时间依赖性密度泛函理论模拟-5-y1]吡喃-4- ylidene]乙酸衍生物来计算它们的电子和光学性质,人口分析,全球反应性指数和光收获效率。结果表明,具有桥接噻吩Pi键接头的染料具有较窄的能量带隙(E(g))和较长的吸收波长(Lambda(Max)),而不是稠合的噻吩pi-Linker。此外,染料的受体单元的氟化通过降低最低未占用的分子轨道(Lumo)能量,增强了2-氰基-2-吡喃-4-少乙酸的电子接受能力,这导致e(g) ,较低化学硬度(ETA),更长的波长。因此,在受体单元处掺入氟原子使导电带可能更有利,导致供体和受体之间的有效电荷分离和电荷转移。

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