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四胍基功能化的吩嗪和芴染料:合成、光学性质及金属配位

Tetraguanidino-functionalized phenazine and fluorene dyes: synthesis, optical properties and metal coordination.

作者信息

Bindewald Elvira, Lorenz Roxana, Hübner Olaf, Brox Dominik, Herten Dirk-Peter, Kaifer Elisabeth, Himmel Hans-Jörg

机构信息

Anorganisch-Chemisches Institut, Im Neuenheimer Feld 270. and Ruprecht-Karls-Universität Heidelberg, 69120 Heidelberg, Germany.

出版信息

Dalton Trans. 2015 Feb 21;44(7):3467-85. doi: 10.1039/c4dt03572k.

Abstract

In this work the first phenazine derivatives with guanidino substituents were prepared and their structural and electronic properties studied in detail. The guanidino groups decrease the HOMO-LUMO gap, massively increase the quantum yield for fluorescence and offer sites for metal coordination. The yellow-orange colored 2,3,7,8-tetraguanidino-substituted phenazine shows intense fluorescence. The wavelength of the fluorescence signal is strongly solvent dependent, covering a region from 515 nm in Et2O solution (with a record quantum yield of 0.39 in Et2O) to 640 nm in water. 2,3-Bisguanidino-substituted phenazine is less fluorescent (maximum quantum yield of 0.17 in THF), but exhibits extremely large Stokes shifts. In contrast, guanidino-functionalized fluorenes emit only very weakly. Subsequently, the influence of coordination on the electronic properties and especially the fluorescence of the phenazine system was analysed. Coordination first takes place at the guanidino groups, and leads to a blue shift of the luminescence signal as well as a massive decrease of the luminescence lifetime. Luminescence is almost quenched completely upon Cu(I) coordination. On the other hand, in the case of Zn(II) coordination the fluorescence signal remains strong (quantum yield of 0.36 in CH3CN). In the case of strong zinc Lewis acids, an excess of metal compound leads to additional coordination at the phenazine N atoms. This is accompanied by significant red-shifts of the lowest-energy transition in the absorption and fluorescence spectra. Pentanuclear complexes with two phenazine units were isolated and structurally characterized, and further aggregation leads to chain polymers.

摘要

在本研究中,制备了首个带有胍基取代基的吩嗪衍生物,并对其结构和电子性质进行了详细研究。胍基降低了最高占据分子轨道(HOMO)与最低未占据分子轨道(LUMO)之间的能隙,大幅提高了荧光量子产率,并提供了金属配位位点。黄色至橙色的2,3,7,8-四胍基取代吩嗪显示出强烈的荧光。荧光信号的波长强烈依赖于溶剂,覆盖范围从二乙醚溶液中的515 nm(在二乙醚中的量子产率达到创纪录的0.39)到水中的640 nm。2,3-双胍基取代吩嗪的荧光较弱(在四氢呋喃中的最大量子产率为0.17),但具有极大的斯托克斯位移。相比之下,胍基功能化的芴仅发出非常微弱的荧光。随后,分析了配位对吩嗪体系电子性质尤其是荧光的影响。配位首先发生在胍基上,导致发光信号蓝移以及发光寿命大幅缩短。与铜(I)配位时,发光几乎完全猝灭。另一方面,在锌(II)配位的情况下,荧光信号仍然很强(在乙腈中的量子产率为0.36)。在强锌路易斯酸的情况下,过量的金属化合物会导致在吩嗪氮原子上发生额外配位。这伴随着吸收光谱和荧光光谱中最低能量跃迁的显著红移。分离并表征了含有两个吩嗪单元的五核配合物,进一步聚集会形成链状聚合物。

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