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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Energy level engineering of thieno[3,4-b]pyrazine based organic sensitizers for quasi-solid-state dye-sensitized solar cells
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Energy level engineering of thieno[3,4-b]pyrazine based organic sensitizers for quasi-solid-state dye-sensitized solar cells

机译:基于噻吩并[3,4-b]吡嗪的有机敏化剂的能级工程,用于准固态染料敏化太阳能电池

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Thieno[3,4-b]pyrazine based organic sensitizers with cyanoacrylic acid (FNE64 and FNE66) or carboxylic acid (FNE65 and FNE67) as anchoring groups have been designed and synthesized to optimize the lowest unoccupied molecular orbital (LUMO) level of panchromatic sensitizer FNE32 with an identical auxiliary electron acceptor. Their absorption, electrochemical and photovoltaic properties are systematically investigated. It is found that sensitizers FNE65 and FNE67 with carboxylic acid as the anchoring group possess more negative LUMO levels as compared with sensitizers FNE64 and FNE66 with cyanoacrylic acid as the anchoring group. In addition to tuning the LUMO level of thieno[3,4-b] pyrazine based organic sensitizer FNE32 by attaching different anchoring groups, the number of the bridged benzene ring has been optimized and two types of organic sensitizers with D-A-pi-A (FNE64 and FNE65) and D-pi-A-pi-A (FNE66 and FNE67) frameworks have been comparatively investigated. Upon the incorporation of an additional phenylene unit into sensitizers FNE64 and FNE65 with the D-A-pi-A configuration, sensitizers FNE66 and FNE67 with the D-pi-A-pi-A structure exhibit unusual hypsochromically shifted absorption maxima. Moreover, the LUMO levels of the thieno[3,4-b] pyrazine based sensitizers FNE66 and FNE67 are lifted up, which results in a dramatically improved driving force for the electron injection from the excited dye molecules to the conduction band of the titania semiconductor. Consequently, the power conversion efficiency of the quasi-solid-state dye-sensitized solar cell (DSSC) based on FNE66 increases by 95% in comparison to that for the quasi-solid-state DSSC based on panchromatic sensitizer FNE32 whose photo-response range is over 900 nm. Our findings will facilitate the understanding of the crucial importance of energy level engineering and present a way for tuning the LUMO levels of organic sensitizers at a fixed electron acceptor.
机译:设计并合成了以氰基丙烯酸(FNE64和FNE66)或羧酸(FNE65和FNE67)为锚固基的噻吩[3,4-b]吡嗪类有机敏化剂,以优化全色敏化剂的最低未占据分子轨道(LUMO)水平FNE32具有相同的辅助电子受体。系统地研究了它们的吸收,电化学和光伏性质。发现与以氰基丙烯酸作为锚定基团的敏化剂FNE64和FNE66相比,以羧酸作为锚定基团的敏化剂FNE65和FNE67具有更多的负LUMO水平。除了通过连接不同的锚定基团来调节噻吩并[3,4-b]吡嗪基有机敏化剂FNE32的LUMO含量外,还优化了桥连苯环的数量,并开发了两种带有DA-pi-A的有机敏化剂( FNE64和FNE65)和D-pi-A-pi-A(FNE66和FNE67)框架已进行了比较研究。在具有D-A-pi-A构型的敏化剂FNE64和FNE65中加入额外的亚苯基单元后,具有D-pi-A-pi-A结构的敏化剂FNE66和FNE67表现出不寻常的七色位移吸收最大值。此外,噻吩并[3,4-b]吡嗪基敏化剂FNE66和FNE67的LUMO含量提高,从而大大提高了从激发的染料分子到二氧化钛半导体导带的电子注入的驱动力。 。因此,与基于全色敏化剂FNE32的准固态DSSC的光响应范围相比,基于FNE66的准固态染料敏化太阳能电池(DSSC)的功率转换效率提高了95%。超过900 nm。我们的发现将有助于理解能级工程的至关重要性,并提供一种在固定电子受体上调节有机敏化剂LUMO含量的方法。

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