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用于金属氧化物半导体敏化的四螯合卟啉发色团:间隔基长度和锚定基团位置的影响

Tetrachelate porphyrin chromophores for metal oxide semiconductor sensitization: effect of the spacer length and anchoring group position.

作者信息

Rochford Jonathan, Chu Dorothy, Hagfeldt Anders, Galoppini Elena

机构信息

Chemistry Department, Rutgers University, 73 Warren Street, Newark, NJ 07102, USA.

出版信息

J Am Chem Soc. 2007 Apr 18;129(15):4655-65. doi: 10.1021/ja068218u. Epub 2007 Mar 27.

Abstract

Four Zn(II)-tetra(carboxyphenyl)porphyrins in solution and bound to metal oxide (TiO2, ZnO, and ZrO2) nanoparticle films were studied to determine the effect of the spacer length and anchoring group position (para or meta) on their binding geometry and photoelectrochemical and photophysical properties. The properties of three types of anchoring groups (COOH and COONHEt3) for four Zn(II)-porphyrins (Zn(II)-5,10,15,20-tetra(4-carboxyphenyl)porphyrin (p-ZnTCPP), Zn(II)-5,10,15,20-tetra(3-carboxyphenyl)porphyrin (m-ZnTCPP), Zn(II)-5,10,15,20-tetra(3-(4-carboxyphenyl)phenyl)porphyrin (m-ZnTCP2P), and Zn(II)-5,10,15,20-tetra(3-ethynyl(4-carboxyphenyl)phenyl)porphyrin (m-ZnTC(PEP)P)) were compared. In m-ZnTCPP, m-ZnTCP2P, and m-ZnTC(PEP)P the four anchoring groups are in the meta position on the meso-phenyl rings of the porphyrin macrocycle, thus favoring a planar binding mode to the metal oxide surfaces. The three meta-substituted porphyrin salts have rigid spacer units of increasing length (phenyl (P), biphenyl (P2), and diphenylethynyl (PEP)) between the porphyrin ring and the carboxy anchoring groups, thus raising the macrocycle from the metal oxide surface. All porphyrins studied here, when bound to TiO2 and ZnO, exhibited quenching of the fluorescence emission, consistent with electron injection into the conduction band of the semiconductor. Steady-state UV-vis and fluorescence studies of p-ZnTCPP on insulating ZrO2 showed evidence of aggregation and exciton coupling. This was not observed in any of the meta-substituted porphyrins. The photoelectrochemical properties (IPCE, Voc, and Isc) of the porphyrins bound to TiO2 films in solar cells have been measured and rationalized with respect to the sensitizer binding geometry and distance from the surface.

摘要

研究了溶液中以及与金属氧化物(TiO₂、ZnO 和 ZrO₂)纳米颗粒薄膜结合的四种 Zn(II)-四(羧基苯基)卟啉,以确定间隔长度和锚定基团位置(对位或间位)对其结合几何结构以及光电化学和光物理性质的影响。比较了四种 Zn(II)-卟啉(Zn(II)-5,10,15,20-四(4-羧基苯基)卟啉(p-ZnTCPP)、Zn(II)-5,10,15,20-四(3-羧基苯基)卟啉(m-ZnTCPP)、Zn(II)-5,10,15,20-四(3-(4-羧基苯基)苯基)卟啉(m-ZnTCP2P)和 Zn(II)-5,10,15,20-四(3-乙炔基(4-羧基苯基)苯基)卟啉(m-ZnTC(PEP)P))的三种类型锚定基团(COOH 和 COONHEt₃)的性质。在 m-ZnTCPP、m-ZnTCP2P 和 m-ZnTC(PEP)P 中,四个锚定基团位于卟啉大环中-苯基环的间位,因此有利于以平面结合模式与金属氧化物表面结合。三种间位取代的卟啉盐在卟啉环和羧基锚定基团之间具有长度递增的刚性间隔单元(苯基(P)、联苯(P2)和二苯乙炔基(PEP)),从而使大环从金属氧化物表面抬起。本文研究的所有卟啉与 TiO₂ 和 ZnO 结合时,均表现出荧光发射猝灭,这与电子注入半导体的导带一致。对绝缘 ZrO₂ 上的 p-ZnTCPP 进行的稳态紫外-可见和荧光研究显示出聚集和激子耦合的迹象。在任何间位取代的卟啉中均未观察到这种情况。已测量了太阳能电池中与 TiO₂ 薄膜结合的卟啉的光电化学性质(IPCE、Voc 和 Isc),并根据敏化剂的结合几何结构和与表面的距离进行了合理分析。

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