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新型 Ru(II)敏化剂,具有不对称吡啶-喹啉混合配体,具有扩展的π共轭:合成及在染料敏化太阳能电池中的应用。

Novel Ru(II) sensitizers bearing an unsymmetrical pyridine-quinoline hybrid ligand with extended π-conjugation: synthesis and application in dye-sensitized solar cells.

机构信息

Division of Physical Chemistry, IAMPPNM, NCSR Demokritos, Athens, Greece.

出版信息

Dalton Trans. 2013 May 14;42(18):6582-91. doi: 10.1039/c3dt33063j.

Abstract

Heteroleptic ruthenium(II) sensitizers DV42 and DV51, encompassing a novel unsymmetrical pyridine-quinoline hybrid ligand with extended π-conjugation, were synthesized, characterized, and utilized in nanocrystalline dye-sensitized solar cells. Due to the extended conjugation of DV42 and DV51, the absorption of the corresponding sensitized TiO2 films extends into the red spectral range, shifted by 30-40 nm relative to the absorption of TiO2 films sensitized with the standard Z907 ruthenium(II) dye. Contact angle measurements of DV42- and DV51-sensitized TiO2 films suggest that these films are hydrophilic with contact angle values commonly observed upon sensitization with the standard N3 ruthenium(II) dye. Electrochemical studies of the novel ruthenium(II) dyes show that their first oxidation potentials lie well below the I(-)/I3(-) redox potential allowing easy regeneration. The excited-state oxidation potentials of both dyes lie above the TiO2 conduction band, permitting efficient electron injection from the excited dye molecules into the semiconductor conduction band. Liquid electrolyte dye-sensitized solar cells incorporating DV42- or DV51-sensitized TiO2 photoelectrodes afford overall power conversion efficiencies of 3.24 or 4.36% respectively. These efficiencies are up to 56% of the power conversion efficiencies attained by TiO2 photoelectrodes sensitized by the benchmark Z907 ruthenium(II) dye under similar experimental conditions.

摘要

杂化钌 (II) 敏化剂 DV42 和 DV51,包含一种新型的不对称吡啶-喹啉混合配体,具有扩展的π共轭,已被合成、表征,并用于纳米晶染料敏化太阳能电池。由于 DV42 和 DV51 的扩展共轭,相应敏化的 TiO2 薄膜的吸收延伸到红色光谱范围,与用标准 Z907 钌 (II) 染料敏化的 TiO2 薄膜的吸收相比,红移了 30-40nm。DV42 和 DV51 敏化的 TiO2 薄膜的接触角测量表明,这些薄膜具有亲水性,接触角值通常与用标准 N3 钌 (II) 染料敏化时观察到的一致。对新型钌 (II) 染料的电化学研究表明,它们的第一氧化电位远低于 I(-)/I3(-) 氧化还原电位,允许容易地再生。两种染料的激发态氧化电位均高于 TiO2 导带,允许从激发态染料分子向半导体导带高效注入电子。含有 DV42 或 DV51 敏化的 TiO2 光电管的液体电解质染料敏化太阳能电池的整体功率转换效率分别为 3.24%或 4.36%。在类似的实验条件下,这些效率达到了 TiO2 光电管用基准 Z907 钌 (II) 染料敏化时获得的功率转换效率的 56%。

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