首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Insight into quinoxaline containing D-pi-A dyes for dye-sensitized solar cells with cobalt and iodine based electrolytes: the effect of pi-bridge on the HOMO energy level and photovoltaic performance
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Insight into quinoxaline containing D-pi-A dyes for dye-sensitized solar cells with cobalt and iodine based electrolytes: the effect of pi-bridge on the HOMO energy level and photovoltaic performance

机译:含钴和碘基电解质的染料敏化太阳能电池用含喹喔啉的D-pi-A染料的见解:pi桥对HOMO能级和光伏性能的影响

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摘要

Three new quinoxaLine-based organic dyes (AQ201, AQ202, and AQ203), containing thiophene, 3,4-ethyLenedioxythiophene ([DOT), and cycLopentadithiophene (CPDT) in the r-system, respectively, have been designed and synthesized for dye-sensitized solwar cells. Different from the traditional donorr-bridge-acceptor (D-r-A) type dyes, the dissymmetric r-bridge on both sides of quinoxaLine enabLes great flexibility in fine-tuning the absorption spectra and energy Levels of the resultant molecules. By changing the r-bridge between the bulky triphenylamine donor and quinoxaLine group, a negative shift was observed regarding the highest occupied moLecular orbital (HOMO) LeveLs of AQ201, AQ202, and AQ203 dyes (0.88, 0.79, and 0.72 V vs. NHE-respectively), while the Lowest unoccupied moLecuLar orbital (LUMO) LeveLs of these dyes remained the same (-1.19, -1.20, and -1.20 V vs. NHE respectively), which, in turn, resulted in a gradual shift of the absorption spectra of AQ dyes. The absorption spectra properties of the dyes are aka analysed by density functional theory. The calculated results in combination with the experiments indicate that the absorption bands are mainly dominated by charge transfer transitions from the HOMO and HOMO-1 orbitaL to the LUMO. In all cases, the [Co(bpy)3+2/3 redox-shutte afforded superior soIar ceLL performance compared to I-/I-3(-). More importanty, dye AQ202 shows the highest power conversion efficiency (PC[) of 8.37% with the [Co(bpy)312 /3 based electrolyte by maintaining a balance between the spectraL absorption range and driving force for dye regeneration. Transient photocurrent decay experiments as well as electrochemical impedance spectroscopy indicate that the Lower HOMO LeveLs Lead to higher eLectron Lifetime and dye regeneration efficiency.
机译:设计并合成了r系统中三种分别基于噻吩,3,4-乙基二苯氧基噻吩([DOT)和cycLopentadithiophene(CPDT)的新的基于喹喔啉的有机染料(AQ201,AQ202和AQ203)。致敏的solwar细胞。与传统的供体桥受体(D-r-A)型染料不同,喹喔啉两面的不对称r桥在微调最终分子的吸收光谱和能级方面具有很大的灵活性。通过改变笨重的三苯胺供体和喹喔啉基团之间的r桥,观察到AQ201,AQ202和AQ203染料的最高占据分子轨道(HOMO)水平位移为负值(相对于NHE- 0.88、0.79和0.72 V)这些染料的最低未占用分子轨道(LUMO)水平保持不变(分别相对于NHE为-1.19,-1.20和-1.20 V),这进而导致吸收光谱的逐渐偏移AQ染料。染料的吸收光谱特性也通过密度泛函理论进行分析。与实验相结合的计算结果表明,吸收带主要由从HOMO和HOMO-1轨道到LUMO的电荷转移跃迁控制。在所有情况下,与I- / I-3(-)相比,[Co(bpy)3 + 2/3氧化还原-shutte提供了卓越的soce ceLL性能。更重要的是,染料AQ202通过保持[光谱图谱]吸收范围和染料再生驱动力之间的平衡,在基于[Co(bpy)312/3的电解质中显示出最高的功率转换效率(PC [),为8.37%。瞬态光电流衰减实验以及电化学阻抗谱表明,较低的HOMO含量可以提高电子寿命和染料再生效率。

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