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Copper(I)-based dye-sensitized solar cells with sterically demanding anchoring ligands : bigger is not always better

机译:基于铜(I)的染料敏化太阳能电池具有空间要求的锚定配体:更大并不总是更好

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摘要

The synthesis and characterization of ((6,6′-diphenyl-[2,2′-bipyridine]-4,4′-diyl)bis(4,1-phenylene))bis(phosphonic acid), 2, are described. Compound 2 has been incorporated as an anchoring ligand in copper(I)-containing dyes in n-type dye-sensitized solar cells (DSCs), combined with 2,2′-bipyridine (bpy), 6-methyl-2,2′-bipyridine (6-Mebpy), 6,6′-dimethyl-2,2′-bipyridine (6,6′-Me2bpy), 4,4′-di(4-bromophenyl)-6,6′-dimethyl-2,2′-bipyridine (3) or 4,4′-di(4-bromophenyl)-6,6′-diphenyl-2,2′-bipyridine (4) as ancillary ligands (Lancillary). Dyes were assembled on mesoporous TiO2 using an on-surface assembly strategy which relies on ligand exchange between surface-anchored Lanchor and [Cu(Lancillary)2]+; 1H NMR spectroscopy was used to confirm that the bulky phenyl substituents did not hinder ligand exchange. Comparison of values of the open-circuit voltages (VOC), short-circuit current densities (JSC) and external quantum efficiency (EQE) spectra for DSCs with model dyes [Cu(2)(bpy)]+, [Cu(2)(6-Mebpy)]+ and [Cu(2)(6,6′-Me2bpy)]+ confirm that methyl-substituents in Lancillary are beneficial. Performance data for DSCs with dyes [Cu(1)(3)]+, [Cu(1)(4)]+, [Cu(2)(3)]+ and [Cu(2)(4)]+ where 1 is the anchor ((6,6′-dimethyl-[2,2′-bipyridine]-4,4′-diyl)bis(4,1-phenylene))bis(phosphonic acid) show that dyes with anchor 2 (phenyl substituents in the 6- and 6′-positions) give relative conversion efficiencies ≤10% with respect to standard dye N719 set at η = 100%; this compares with relative efficiencies of up to 34.5% for the dyes [Cu(1)(3)]+ and [Cu(1)(4)]+. The performance of [Cu(2)(3)]+ can be improved by the addition of the co-adsorbant chenodeoxycholic acid. Although the phenyl (versus methyl) substituents lead to enhanced light absorption to lower energies, dyes with anchor 2 quickly bleach when exposed to the I−/I3− electrolyte; bleaching also occurs after soaking in solutions of LiI. The dye can be regenerated by treatment of a bleached electrode with Lancillary, or with [Cu(NCMe)4]+ followed by Lancillary.
机译:描述了((6,6'-二苯基-[2,2'-联吡啶] -4,4'-二基)双(4,1-亚苯基))双(膦酸)2的合成和表征。化合物2已作为锚定配体掺入n型染料敏化太阳能电池(DSC)中的含铜(I)染料中,并与2,2'-联吡啶(bpy),6-甲基-2,2' -联吡啶(6-Mebpy),6,6'-二甲基-2,2'-联吡啶(6,6'-Me2bpy),4,4'-二(4-溴苯基)-6,6'-二甲基-2 ,2'-联吡啶(3)或4,4'-二(4-溴苯基)-6,6'-联苯-2,2'-联吡啶(4)作为辅助配体(Lancillary)。使用表面组装策略将染料组装在介孔TiO2上,该策略依赖于表面锚定的Lanchor与[Cu(Lancillary)2] +之间的配体交换。 1 H NMR光谱用于确认庞大的苯基取代基不阻碍配体交换。具有模型染料[Cu(2)(bpy)] +,[Cu(2)的DSC的开路电压(VOC),短路电流密度(JSC)和外部量子效率(EQE)光谱的值比较(6-Mebpy)] +和[Cu(2)(6,6'-Me2bpy)] +确认Lancillary中的甲基取代基是有益的。染料[Cu(1)(3)] +,[Cu(1)(4)] +,[Cu(2)(3)] +和[Cu(2)(4)] +的DSC性能数据1是锚((6,6'-二甲基-[2,2'-联吡啶] -4,4'-二基)双(4,1-亚苯基))双(膦酸)表明具有锚2的染料相对于标准染料N719设定为η= 100%,在6和6'位置上的苯基取代基的相对转化效率≤10%;相比之下,染料[Cu(1)(3)] +和[Cu(1)(4)] +的相对效率高达34.5%。 [Cu(2)(3)] +的性能可以通过添加助吸附剂鹅去氧胆酸来改善。尽管苯基(相对于甲基)取代基增强了光吸收,降低了能量,但是当暴露于I- / I3-电解质中时,带有锚2的染料会迅速漂白。在LiI溶液中浸泡后也会发生漂白。可以通过用Lancillary或[Cu(NCMe)4] +,然后再Lancillary处理漂白电极来再生染料。

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