Institute of Molecular Functional Materials, Hong Kong Baptist University, Kowloon Tong, Hong Kong, PR China.
Dalton Trans. 2011 Mar 14;40(10):2314-23. doi: 10.1039/c0dt01043j. Epub 2010 Nov 18.
Four new heteroleptic ruthenium sensitizers [Ru(4,4'-carboxylic acid-2,2'-bipyridine)(L)(NCS)(2)] (L = 5,5'-bis(4-octylthiophen-2-yl)-2,2'-bipyridine (1), 5,5'-bis(N,N-diphenyl-4-aminophenyl)-2,2'-bipyridine (2), 5,5'-bis(5-(N,N-diphenyl-4-aminophenyl)-thiophen-2-yl)-2,2'-bipyridine (3) and 5,5'-bis(4-octyl-5-(N,N-diphenyl-4-aminophenyl)-thiophen-2-yl)-2,2'-bipyridine (4)) were synthesized, characterized by physicochemical and computational methods, and utilized as photosensitizers in nanocrystalline dye-sensitized solar cells (DSSCs). The λ(max) of the metal-to-ligand charge transfer (MLCT) absorption of these four ruthenium dyes (527 nm for 1, 535 nm for 2, 585 nm for 3 and 553 nm for 4) can be tuned by various structural modifications of the ancillary ligand and it was shown that increasing the conjugation length of such ligand reduces the energy as well as the molar absorption coefficient of the MLCT band. The maximum incident photon to current conversion efficiency (IPCE) of 41.4% at 550 nm, 38.6% at 480 nm, 39.4% at 470 nm and 31.1% at 480 nm for 1-, 2-, 3- and 4-sensitized solar cells were obtained. Respectable power conversion efficiencies of 3.00%, 2.51%, 2.00% and 2.03% were realized, respectively, when the sensitizers 1, 2, 3 and 4 were used in DSSCs under the standard air mass (AM) 1.5 sunlight illumination (versus 5.9% for standard N719).
四种新型杂化钌敏化剂 [Ru(4,4'-羧酸-2,2'-联吡啶)(L)(NCS)(2)](L=5,5'-双(4-辛基噻吩-2-基)-2,2'-联吡啶(1),5,5'-双(N,N-二苯基-4-氨基苯基)-2,2'-联吡啶(2),5,5'-双(5-(N,N-二苯基-4-氨基苯基)-噻吩-2-基)-2,2'-联吡啶(3)和 5,5'-双(4-辛基-5-(N,N-二苯基-4-氨基苯基)-噻吩-2-基)-2,2'-联吡啶(4))被合成并通过物理化学和计算方法进行了表征,然后将其用作纳米晶染料敏化太阳能电池(DSSC)中的敏化剂。这些四种钌染料的金属-配体电荷转移(MLCT)吸收的λ(max)(1 为 527nm,2 为 535nm,3 为 585nm,4 为 553nm)可以通过辅助配体的各种结构修饰进行调节,并且表明增加此类配体的共轭长度会降低 MLCT 带的能量和摩尔吸收系数。1-、2-、3-和 4-敏化太阳能电池在 550nm 处获得的最大入射光子到电流转换效率(IPCE)分别为 41.4%、38.6%、39.4%和 31.1%,在 480nm 处获得的最大 IPCE 分别为 41.4%、38.6%、39.4%和 31.1%。当 1、2、3 和 4 敏化剂在标准空气质量(AM)1.5 阳光照射下用于 DSSC 时,分别实现了 3.00%、2.51%、2.00%和 2.03%的可观功率转换效率(5.9%为标准 N719)。