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高荧光N,N-二甲基氨基苯乙炔芳烃:合成、光物理性质及电化学发光

Highly fluorescent N,N-dimethylaminophenylethynylarenes: synthesis, photophysical properties, and electrochemiluminescence.

作者信息

Ho Tong-Ing, Elangovan Arumugasamy, Hsu Hsien-Yi, Yang Shu-Wen

机构信息

Department of Chemistry, National Taiwan University, Taipei - 106, Taiwan.

出版信息

J Phys Chem B. 2005 May 12;109(18):8626-33. doi: 10.1021/jp0444518.

Abstract

A new family of aryl-pi-donor-aryl molecules has been synthesized and studied with respect to their photophysical properties and electrogenerated chemiluminscence (ECL) for the first time. Anthracene, phenanthrene, naphthalene, biphenyl, and fluorene were coupled with N,N-dimethylanilino moiety via a C-C triple bond (1-7). Introduction of such a strong electron-donating moiety as N,N-dimethylanilino group through a triple bond imparts new properties to the resultant molecules that are not commonly observed for the parent arenes. All molecules show absorption in the near-visible region and emission totally in the visible region with high fluorescence quantum yields. Bright solid-state photoluminescence has also been noticed for all the compounds in the visible region. 9-Anthryl- and 1-naphthyl- derivatives exhibited blue-shifted electrochemiluminescence (ECL) relative to their photoluminescence because of aggregation. 9-Phenanthryl- and 2-naphthyl- derivatives did not show ECL. 2-Biphenyl derivative showed monomeric ECL while 4-biphenyl counterpart exhibited excimer ECL. No ECL was observed for 2-fluorenyl derivative. The observed electronic properties are discussed with regard to the structure of the molecules. The characteristics of the molecules chosen in the present study open up new prospects and promises for novel tunable organic materials, on the basis of simple extension of conjugation to promote intramolecular communication, for ECL, OLED, and other optoelectronic applications.

摘要

首次合成了一类新的芳基-π-供体-芳基分子,并研究了它们的光物理性质和电致化学发光(ECL)。蒽、菲、萘、联苯和芴通过碳-碳三键与N,N-二甲基苯胺部分偶联(1-7)。通过三键引入像N,N-二甲基苯胺基团这样强的供电子部分,赋予了所得分子一些母体芳烃通常不具备的新性质。所有分子在近可见光区域有吸收,且在可见光区域完全发射,具有高荧光量子产率。所有化合物在可见光区域还表现出明亮的固态光致发光。9-蒽基和1-萘基衍生物由于聚集,相对于其光致发光表现出蓝移的电致化学发光(ECL)。9-菲基和2-萘基衍生物未表现出ECL。2-联苯衍生物表现出单体ECL,而4-联苯类似物表现出准分子ECL。2-芴基衍生物未观察到ECL。根据分子结构对观察到的电子性质进行了讨论。本研究中所选分子的特性为新型可调有机材料开辟了新的前景,并有望基于简单的共轭扩展来促进分子内通讯,用于ECL、OLED和其他光电子应用。

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