Zhang Xianxi, Du Yuchang, Chen Qianqian, Sun Huafei, Pan Tingting, Hu Guiqi, Ma Ruimin, Sun Yuanwei, Li Dacheng, Dou Jianmin, Pan Xu
Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252059, PR China.
Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252059, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2014 Dec 10;133:514-20. doi: 10.1016/j.saa.2014.06.015. Epub 2014 Jun 14.
Alkyne bridged porphyrin sensitizers have attracted great attention in the field of dye-sensitized solar cells (DSSCs) because of their excellent photo-to-electric conversion efficiencies, among which YD2 has reached 11% while YD2-o-C8 has reached 11.9% solely and 12.3% co-sensitized with other sensitizers. Design and screening of porphyrin sensitizer candidates with wider electronic absorption spectra to further improve the photo-to-electric conversion efficiencies of corresponding solar cells is still very important. Twenty novel alkyne bridged zinc porphyrin sensitizer candidates composed of the donors diarylamino-, tri-4-methylphenyl-, tri-hydroxyl- and tri-amino-substituted zinc porphyrins as well as the selected acceptors E, M, Q, R and S have been designed and calculated at the density functional B3LYP level. YD2 and YD2-o-C8 are also calculated at the same level for comparison. The result shows that the sensitizer candidates all have smaller HOMO-LUMO gaps as well as wider and red-shifted absorption bands than those of YD2 and YD2-o-C8. Most of the sensitizer candidates have appropriate HOMO and LUMO energy levels relative to the redox potential of the mediator and the TiO2 conduction band, showing that they are promising to provide comparable or even higher photo-to-electric conversion efficiencies than 11% of YD-2 or 11.9% of YD2-o-C8.
炔桥联卟啉敏化剂因其优异的光电转换效率在染料敏化太阳能电池(DSSC)领域备受关注,其中YD2的光电转换效率达到了11%,而YD2-o-C8单独使用时达到了11.9%,与其他敏化剂共敏化时达到了12.3%。设计和筛选具有更宽电子吸收光谱的卟啉敏化剂候选物以进一步提高相应太阳能电池的光电转换效率仍然非常重要。已经设计并在密度泛函B3LYP水平上计算了二十种新型炔桥联锌卟啉敏化剂候选物,它们由供体二芳基氨基、三(4-甲基苯基)、三羟基和三氨基取代的锌卟啉以及选定的受体E、M、Q、R和S组成。同时在相同水平上计算了YD2和YD2-o-C8用于比较。结果表明,与YD2和YD2-o-C8相比,这些敏化剂候选物均具有更小的HOMO-LUMO能隙以及更宽且红移的吸收带。相对于介质的氧化还原电位和TiO2导带,大多数敏化剂候选物具有合适的HOMO和LUMO能级,这表明它们有望提供与YD-2的11%或YD2-o-C8的11.9%相当甚至更高的光电转换效率。