Wei Liguo, Yang Yulin, Fan Ruiqing, Na Yong, Wang Ping, Dong Yuwei, Yang Bin, Cao Wenwu
Department of Chemistry, Harbin Institute of Technology, Harbin 150001, P. R. China.
Dalton Trans. 2014 Aug 7;43(29):11361-70. doi: 10.1039/c4dt00437j. Epub 2014 Jun 13.
N,N'-Bis((6-methoxylpyridin-2-yl)methylene)-p-phenylenediimine based four-coordinated d(10) transition metal complexes (named ML, M = Zn, Cd, Hg) were synthesized and employed as co-sensitizers and co-adsorbents in combination with a ruthenium complex N719 in dye sensitized solar cells. After co-sensitization, not only the incident-photon-to-current conversion efficiency is enhanced but also the dark current is reduced. A short circuit current density of 14.46 mA cm(-2), an open circuit voltage of 0.74 V and a fill factor of 0.62 corresponding to an overall conversion efficiency of 6.65% under AM 1.5 G solar irradiation were achieved when ZnL was used as a co-sensitizer, which are much higher than that for DSSCs only sensitized by N719 (5.22%) under the same conditions. The improvement in efficiency is attributed to the fact that N,N'-bis((6-methoxylpyridin-2-yl)methylene)-p-phenylenediimine coordinated complexes overcome the deficiency of N719 absorption in the low wavelength region of the visible spectrum, prevent its aggregation, offset competitive visible light absorption of I3(-) and reduce charge recombination due to formation of an effective cover layer of the dye molecules on the TiO2 surface. As a result, the synthesized complexes are promising candidates as co-adsorbents and co-sensitizers for highly efficient DSSCs.
合成了基于N,N'-双((6-甲氧基吡啶-2-基)亚甲基)-对苯二亚胺的四配位d(10)过渡金属配合物(命名为ML,M = Zn、Cd、Hg),并将其作为共敏化剂和共吸附剂与钌配合物N719结合用于染料敏化太阳能电池。共敏化后,不仅提高了入射光子到电流的转换效率,还降低了暗电流。当使用ZnL作为共敏化剂时,在AM 1.5 G太阳光照下,短路电流密度为14.46 mA cm(-2),开路电压为0.74 V,填充因子为0.62,对应总转换效率为6.65%,这比在相同条件下仅由N719敏化的染料敏化太阳能电池(5.22%)高得多。效率的提高归因于N,N'-双((6-甲氧基吡啶-2-基)亚甲基)-对苯二亚胺配位配合物克服了N719在可见光谱低波长区域吸收的不足,防止其聚集,抵消了I3(-)的竞争性可见光吸收,并减少了由于在TiO2表面形成有效的染料分子覆盖层而导致的电荷复合。因此,合成的配合物有望成为高效染料敏化太阳能电池的共吸附剂和共敏化剂。