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胺功能化发光 Au-Cu 簇可逆质子化:表征、光物理和理论研究。

Reversible protonation of amine-functionalized luminescent Au-Cu clusters: characterization, photophysical and theoretical studies.

机构信息

University of Joensuu, Joensuu, 80101, Finland.

出版信息

Dalton Trans. 2010 Mar 14;39(10):2676-83. doi: 10.1039/b922803a. Epub 2010 Jan 25.

Abstract

Reaction of the polymeric alkynyl complexes (AuC(2)C(6)H(4)R)(n) (R = 4-NH(2) and 3-NH(2)) with the diphosphine PPh(2)C(6)H(4)PPh(2) in the presence of Cu(+) ions gave two novel heterometallic aggregates {Au(3)Cu(2)(C(2)C(6)H(4)R)(6)}Au(3)(PPh(2)C(6)H(4)PPh(2))(3)(2) (R = 4-NH(2) (2), 3-NH(2) (3)). The compounds obtained were characterized by NMR spectroscopy and ESI-MS measurements. The solid-state structure of their 4-NMe(2) congener 1 is reported. The complexes 1-3 reversibly react with strong (HSO(3)Me and HSO(3)CF(3)) acids to give the adducts {Au(3)Cu(2)(C(2)C(6)H(4)-R)(6)*(R'SO(3)H)(6)}Au(3)(PPh(2)C(6)H(4)PPh(2))(3)(2) (R = 4-NMe(2) (4), 4-NH(2) (5), 3-NH(2) (6)) with six acid molecules bound to the amine groups of the alkynyl ligands. Composition and structure of the adducts were established using ESI-MS and multinuclear ((31)P, (1)H and (1)H-(1)H COSY) NMR spectroscopy. It was found that formation of these adducts results in crucial changes of luminescence characteristics of the complexes 1-3 to give substantial (ca. 100 nm) blue shift of the emission maxima and a sharp increase (about an order of magnitude) in luminescence quantum yield for 4-NR(2) substituted derivatives. In the case of 3-substituted complex 3 the effect of adduct formation is much less pronounced and leads to blue-shift of emission maximum for 30 nm accompanied with a small drop in emission quantum yield. Computational studies have been performed to provide additional insight into the structural, electronic and photophysical properties of the starting complexes and their acid adducts. Interpretation of the photophysical effects induced by the adduct formation was suggested.

摘要

聚合炔基配合物 (AuC(2)C(6)H(4)R)(n)(R = 4-NH(2) 和 3-NH(2))与二膦配体 PPh(2)C(6)H(4)PPh(2) 在 Cu(+)离子存在下的反应生成了两种新型杂金属配合物 {Au(3)Cu(2)(C(2)C(6)H(4)R)(6)}Au(3)(PPh(2)C(6)H(4)PPh(2))(3)(2)(R = 4-NH(2) (2),3-NH(2) (3))。所得到的化合物通过 NMR 光谱和 ESI-MS 测量进行了表征。还报道了它们的 4-NMe(2) 同系物 1 的固态结构。配合物 1-3 与强酸 (HSO(3)Me 和 HSO(3)CF(3)) 可逆反应生成加合物 {Au(3)Cu(2)(C(2)C(6)H(4)-R)(6)*(R'SO(3)H)(6)}Au(3)(PPh(2)C(6)H(4)PPh(2))(3)(2)(R = 4-NMe(2) (4),4-NH(2) (5),3-NH(2) (6)),其中六个酸分子与炔基配体的胺基结合。通过 ESI-MS 和多核((31)P、(1)H 和 (1)H-(1)H COSY)NMR 光谱确定了加合物的组成和结构。结果发现,这些加合物的形成导致配合物 1-3 的发光特性发生关键变化,发射峰发生显著(约 100nm)蓝移,4-NR(2) 取代衍生物的发光量子产率急剧增加(约一个数量级)。对于 3-取代的配合物 3,加合物形成的影响要小得多,导致发射峰蓝移 30nm,同时发射量子产率略有下降。还进行了计算研究,以提供对起始配合物及其酸加合物的结构、电子和光物理性质的额外深入了解。提出了对加合物形成引起的光物理效应的解释。

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