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带有9-蒽甲酸酯天线的钛氧簇:一种荧光和光电流转移材料。

Titanium-oxo cluster with 9-anthracenecarboxylate antennae: a fluorescent and photocurrent transfer material.

作者信息

Wu Yin-Yin, Lu Xiao-Wen, Qi Miao, Su Hu-Chao, Zhao Xiao-Wei, Zhu Qin-Yu, Dai Jie

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Soochow University , Suzhou 215123, People's Republic of China.

出版信息

Inorg Chem. 2014 Jul 21;53(14):7233-40. doi: 10.1021/ic500390j. Epub 2014 Jun 20.

DOI:10.1021/ic500390j
PMID:24949861
Abstract

Attention has been paid to titanium-oxo clusters (TOCs) modified with functional molecules, because they can be considered as model systems for dye-sensitized titanium oxides in terms of their information in structures and electron transfer. We select 9-anthracenecarboxylate (9-AC) as a photoactive ligand and prepare two model compounds, [Ti6O6(O(i)Pr)6(9-AC)6] (1) and [Ti6O4(O(i)Pr)6(cat)4(9-AC)2] (2) (where cat = catecholate). Structures of the TOCs and the dye-TOC linkage are characterized by single-crystal analysis. Solvent-induced fluorescence change is observed for the cluster solution, and the fluorescence can be turned off by irradiating and on by oxygen bubbling. Photoinduced Ti(III) is responsible for the fluorescence extinction. The photocurrent conversion property of the clusters is examined by use of a three-electrode cell with cluster-coated indium tin oxide (ITO) electrodes. The results indicate that 9-AC is an effective photosensitizer and cluster 1 shows higher photocurrent intensity for its multiantenna structure in comparison with that of 2. Density of states for cluster 1 is calculated, in which the discrete energy bands of Ti6O24 include a number of new energy levels for the contribution of 9-AC molecules.

摘要

人们已经关注到用功能分子修饰的钛氧簇(TOC),因为就其结构信息和电子转移而言,它们可被视为染料敏化氧化钛的模型体系。我们选择9-蒽甲酸(9-AC)作为光活性配体,并制备了两种模型化合物,[Ti6O6(O(i)Pr)6(9-AC)6](1)和[Ti6O4(O(i)Pr)6(cat)4(9-AC)2](2)(其中cat =儿茶酚)。通过单晶分析对TOC的结构和染料-TOC键进行了表征。在簇溶液中观察到溶剂诱导的荧光变化,通过照射可使荧光关闭,通过鼓入氧气可使荧光开启。光致Ti(III)导致荧光猝灭。使用带有簇涂覆氧化铟锡(ITO)电极的三电极电池研究了簇的光电流转换性能。结果表明,9-AC是一种有效的光敏剂,与2相比,簇1因其多天线结构而表现出更高的光电流强度。计算了簇1的态密度,其中Ti6O24的离散能带因9-AC分子的贡献而包含许多新的能级。

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