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Influence of a co-adsorbant on the performance of bis(diimine) copper(I)-based dye-sensitized solar cells

机译:共吸附剂对双(二亚胺)铜(I)基染料敏化太阳能电池性能的影响

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摘要

In the bis(diimine) copper(I) dyes, [Cu(1)(3)]+ and [Cu(1)(4)]+ (1 = ((6,6'-dimethyl-[2,2'-bipyridine]-4,4'-diyl)bis(4,1-phenylene))bis(phosphonic acid), the ancillary ligands 3 and 4 contain sterically demanding second-generation hole-transporting dendrons with methyl or phenyl substituents adjacent to the N-donor atoms of the 2,2'-bipyridine metal-binding domain. The performances of DSCs containing [Cu(1)(3)]+ and [Cu(1)(4)]+ depend on both the solvent (acetone or CH2Cl2) used in the dye-bath and on the presence of a co-adsorbant. Irrespective of solvent, the dye [Cu(1)(4)]+ (6,6'-Ph2-substituted) only performs well if chenodeoxycholic acid (cheno) is added as a co-adsorbant; for [Cu(1)(3)]+, cheno has a noticeable effect when the dye assembly is carried out in CH2Cl2. Overall, the results indicate that a combination of small 6,6'-substituents in the ancillary ligand and acetone in the dye-dipping cycle lead to the best performing dyes, and for the second-generation dyes, the addition of cheno is essential. Conditions to form TiO2-bound [Cu(1)(5)]+ (5 = 4,4'-bis(4-iodophenyl)-6,6'-dimethyl-2,2'-bipyridine) in a stepwise manner have been optimized and the effects of introducing cheno at different points during the dye-assembly process have been investigated. When cheno is added to the [Cu(MeCN)4][PF6]/5 dye-bath, the DSCs exhibit values of JSC, VOC and h values that are similar to those with no co-adsorbant. However, competitive binding of 1 and cheno in the first dipping-cycle leads to lower values of JSC and lower photoconversion efficiencies.
机译:在双(二亚胺)铜(I)染料中,[Cu(1)(3)] +和[Cu(1)(4)] +(1 =(((6,6'-dimethyl- [2,2' -联吡啶] -4,4'-二基)双(4,1-亚苯基))双(膦酸),辅助配体3和4含有与甲基或苯基取代基相邻的空间要求高的第二代空穴传输树枝状分子。 2,2'-联吡啶金属结合域的N-给体原子。含[Cu(1)(3)] +和[Cu(1)(4)] +的DSC的性能取决于溶剂(丙酮)染料浴中以及在有共吸附剂的情况下使用的是CH2Cl2),而与溶剂无关,染料[Cu(1)(4)] +(6,6'-Ph2-取代的)仅在鹅去氧胆酸中表现良好添加酸(Cheno)作为助吸附剂;对于[Cu(1)(3)] +,当染料在CH2Cl2中进行组装时,化学反应具有明显的效果。总体而言,结果表明小6的组合在染料浸渍循环中,辅助配体和丙酮中的6,-取代基导致性能最佳的染料,而对于第二代染料,其添加剂n cheno是必不可少的。逐步形成TiO2结合的[Cu(1)(5)] +(5 = 4,4'-双(4-碘苯基)-6,6'-二甲基-2,2'-联吡啶)的条件进行了优化,并研究了在染料组装过程中在不同位置引入化学反应的效果。当向[Cu(MeCN)4] [PF6] / 5染浴中添加化学剂时,DSC的JSC,VOC和h值与无助吸附剂的相似。但是,在第一个浸入循环中1和cheno的竞争结合导致JSC值降低和光转换效率降低。

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