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基于含硫杂环配体锚定的钛氧簇合物的光电性能的配体结构影响:模型研究。

Effects of the Ligand Structures on the Photoelectric Activities, a Model Study Based on Titanium-Oxo Clusters Anchored with S-Heterocyclic Ligands.

机构信息

College of Chemistry, Chemical Engineering and Materials Science , Soochow University , Suzhou 215123 , P. R. China.

出版信息

Inorg Chem. 2019 Feb 18;58(4):2736-2743. doi: 10.1021/acs.inorgchem.8b03310. Epub 2019 Feb 7.

DOI:10.1021/acs.inorgchem.8b03310
PMID:30729787
Abstract

Titanium oxo clusters (TOCs) have become one of the worldwide hot research topics because they are excellent molecular TiO materials having unique photoactive properties and can been used as models of dye-sensitized solar cells (DSSCs). S-Heterocyclic ligands such as thiophene (Th) and tetrathiafulvalene (TTF) derivatives have been widely used in electronic or photoelectronic devices and solar cells. However, a study of the synthesis and properties of TOCs anchored with Th and TTF derivatives is missing. Herein four such TOCs as single crystals were synthesized and structurally characterized: [TiO(OPr)(L)] (1), [TiO(OPr)(L)] (2), [TiO(OPr)(L)(OPPh)] (3), and [TiO(OPr)(L)(OPPh)] (4). Charge transfer from the Th or TTF electron donor to the TOC core was evaluated by electronic spectra and theoretical calculations. This work first systematically investigated the photoelectrochemistry of TOCs with different conjugated S-heterocyclic ligands in molecular levels. The photocurrent densities of these cluster-modified TiO electrodes were examined using DSSCs, which were well responsive to irradiation. The photocurrents of TTF cluster-modified electrodes are higher than those of the Th cluster-modified electrodes because of the sulfur-rich conjugated system.

摘要

钛氧簇(TOCs)已成为全球热门研究课题之一,因为它们是具有独特光活性的优秀分子 TiO 材料,可用作染料敏化太阳能电池(DSSC)的模型。噻吩(Th)和四硫富瓦烯(TTF)衍生物等 S-杂环配体已广泛应用于电子或光电设备和太阳能电池中。然而,对于与 Th 和 TTF 衍生物锚定的 TOCs 的合成和性质研究还很缺乏。本文合成并结构表征了四个此类带有 Th 和 TTF 衍生物的 TOC 单晶:[TiO(OPr)(L)](1)、[TiO(OPr)(L)](2)、[TiO(OPr)(L)(OPPh)](3)和[TiO(OPr)(L)(OPPh)](4)。通过电子光谱和理论计算评估了 Th 或 TTF 给体电子向 TOC 核的电荷转移。这项工作首次在分子水平上系统地研究了具有不同共轭 S-杂环配体的 TOCs 的光电化学。使用 DSSC 测试了这些簇修饰的 TiO 电极的光电流密度,它们对辐照有很好的响应。由于富硫的共轭体系,TTF 簇修饰电极的光电流高于 Th 簇修饰电极。

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