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以萘二甲酰亚胺为π间隔基的T型吩噻嗪/咔唑基有机染料用于染料敏化太阳能电池的理论研究

Theoretical study of T shaped phenothiazine/carbazole based organic dyes with naphthalimide as π-spacer for DSSCs.

作者信息

Xu Zhijie, Li Yameng, Li Yuanyuan, Yuan Shundong, Hao Lanzhong, Gao Shaolei, Lu Xiaoqing

机构信息

College of Science, China University of Petroleum, Qingdao, Shandong 266580, PR China.

College of Science, China University of Petroleum, Qingdao, Shandong 266580, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2020 Jun 5;233:118201. doi: 10.1016/j.saa.2020.118201. Epub 2020 Feb 27.

Abstract

Eight novel T shaped phenothiazine/carbazole based organic dyes with naphthalimide as π-spacer were designed, and the geometries, electronic structures, and optical features of these isolated dyes and dye-(TiO) systems were investigated with density functional theory (DFT) and time dependent density functional theory (TD-DFT) calculations. Some quantify factors influencing the energy conversion efficiency (PCE) such as the light harvesting efficiency (LHE), electron injection driving force (ΔG and dye regeneration driving force (ΔG) were also calculated for dye-sensitized solar cells (DSSCs) applications. It is found that these dyes show a good performance of electron injection and dye regeneration owing to the proper value of ΔG and ΔG. The optimized geometries of the non-planar molecular configuration of donor and the planar structure of the naphthalimide conjugated bridge are beneficial to efficient intramolecular charge transfer and the suppression of molecular aggregation. The properties about the electronic structure and absorption spectra indicate that replacement of benzene with thiophene unit near to cyanoacetic acid acceptor can generate more efficient conjugation effect and achieve red shift of absorption spectra, resulting a higher J and V in DSSCs device. The theoretical results reveal that DTPH2, DTPH4, DTCA2 and DTCA4 would be used as potential sensitizers for DSSCs applications.

摘要

设计了八种以萘二甲酰亚胺为π-间隔基的新型T形吩噻嗪/咔唑基有机染料,并采用密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)计算研究了这些孤立染料以及染料-(TiO)体系的几何结构、电子结构和光学特性。还针对染料敏化太阳能电池(DSSC)应用计算了一些影响能量转换效率(PCE)的量化因子,如光捕获效率(LHE)、电子注入驱动力(ΔG)和染料再生驱动力(ΔG)。研究发现,由于ΔG和ΔG的合适值,这些染料表现出良好的电子注入和染料再生性能。供体的非平面分子构型和萘二甲酰亚胺共轭桥的平面结构的优化几何结构有利于高效的分子内电荷转移和分子聚集的抑制。关于电子结构和吸收光谱的性质表明,在氰基乙酸受体附近用噻吩单元取代苯可以产生更有效的共轭效应并实现吸收光谱的红移,从而在DSSC器件中获得更高的J和V。理论结果表明,DTPH2、DTPH4、DTCA2和DTCA4有望用作DSSC应用的潜在敏化剂。

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