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Schiff Base Ancillary Ligands in Bis(diimine) Copper(I) Dye-Sensitized Solar Cells

机译:双席(二亚胺)铜(I)染料敏化太阳能电池的Schiff基辅助配体

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摘要

Five 6,6′-dimethyl-2,2′-bipyridine ligands bearing N-arylmethaniminyl substituents in the 4- and 4′-positions were prepared by Schiff base condensation in which the aryl group is Ph (1), 4-tolyl (2), 4-tBuC6H4 (3), 4-MeOC6H4 (4), and 4-Me2NC6H4 (5). The homoleptic copper(I) complexes [CuL2][PF6] (L = 1–5) were synthesized and characterized, and the single crystal structure of [Cu(1)2][PF6]·Et2O was determined. By using the “surfaces-as-ligands, surfaces-as-complexes” (SALSAC) approach, the heteroleptic complexes [Cu(6)(Lancillary)]+ in which 6 is the anchoring ligand ((6,6′-dimethyl-[2,2′-bipyridine]-4,4′-diyl)bis(4,1-phenylene))bis(phosphonic acid)) and Lancillary = 1–5 were assembled on FTO-TiO2 electrodes and incorporated as dyes into n-type dye-sensitized solar cells (DSCs). Data from triplicate, fully-masked DSCs for each dye revealed that the best-performing sensitizer is [Cu(6)(1)]+, which exhibits photoconversion efficiencies (η) of up to 1.51% compared to 5.74% for the standard reference dye N719. The introduction of the electron-donating MeO and Me2N groups (Lancillary = 4 and 5) is detrimental, leading to a decrease in the short-circuit current densities and external quantum efficiencies of the solar cells. In addition, a significant loss in open-circuit voltage is observed for DSCs sensitized with [Cu(6)(5)]+, which contributes to low values of η for this dye. Comparisons between performances of DSCs containing [Cu(6)(1)]+ and [Cu(6)(4)]+ with those sensitized by analogous dyes lacking the imine bond indicate that the latter prevents efficient electron transfer across the dye.
机译:通过Schiff碱缩合制备轴承N-芳基甲基丙烯基取代基的五个6,6'-二甲基-2,2'-硼乙烯基二烷基取代基,其中芳基是pH(1),4-甲苯基( 2),4-Tbuc6H4(3),4-MeoC6H4(4)和4-Me2NC6H4(5)。合成和表征分子铜(I)配合物[CUL2] [CUL2] [PF6](L = 1-5),测定[Cu(1)2] [PF6]·ET 2 O的单晶结构。通过使用“表面 - 配体,表面 - 络合物”(Salsac)方法,其中6是锚固配体的异络合物[Cu(6)(甘蓝型)] +((6,6'-二甲基 - [2,2'-硼吡啶] -4,4'-二基)双(4,1-亚苯基))双(膦酸))和Lancillary = 1-5组装在FTO-TiO 2电极上,并将染料掺入N. -Type染料敏化太阳能电池(DSC)。来自一式三份,全掩蔽DSC的数据显示,最佳性能的敏化剂是[Cu(6)(1)] +,其表现出高达1.51%的光电转化效率(η),而标准参考为5.74%染料N719。电子提供的MEO和ME2N组(Lancillary = 4和5)的引入是有害的,导致太阳能电池的短路电流密度和外部量子效率降低。此外,对于用[Cu(6)(5)] +致敏的DSC,观察到开路电压的显着损失,这有助于该染料的η的低值。含有[Cu(6)(1)] +和[Cu(6)] +和通过缺乏亚胺键的类似染料致敏的那些比较,表明后者防止了在染料上的有效电子转移。

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