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双生色光敏剂:如何以及在何处将芘基部分连接到菲咯啉上以生成铜(I)配合物。

Bichromophoric Photosensitizers: How and Where to Attach Pyrene Moieties to Phenanthroline to Generate Copper(I) Complexes.

机构信息

Department of Energy Conversion, Institute of Physical and Theoretical Chemistry, Technische Universität Brauschweig, Rebenring 31, 38106 Braunschweig, Germany.

出版信息

Inorg Chem. 2023 May 29;62(21):8166-8178. doi: 10.1021/acs.inorgchem.3c00482. Epub 2023 May 18.

Abstract

Pyrene is a polycyclic aromatic hydrocarbon and organic dye that can form superior bichromophoric systems when combined with a transition metal-based chromophore. However, little is known about the effect of the type of attachment (, 1- 2-pyrenyl) and the individual position of the pyrenyl substituents at the ligand. Therefore, a systematic series of three novel diimine ligands and their respective heteroleptic diimine-diphosphine copper(I) complexes has been designed and extensively studied. Special attention was given to two different substitution strategies: (i) attaching pyrene its 1-position, which occurs most frequently in the literature, or its 2-position and (ii) targeting two contrasting substitution patterns at the 1,10-phenanthroline ligand, , the 5,6- and the 4,7-position. In the applied spectroscopic, electrochemical, and theoretical methods (UV/vis, emission, time-resolved luminescence and transient absorption, cyclic voltammetry, density functional theory), it has been shown that the precise choice of the derivatization sites is crucial. Substituting the pyridine rings of phenanthroline in the 4,7-position with the 1-pyrenyl moiety has the strongest impact on the bichromophore. This approach results in the most anodically shifted reduction potential and a drastic increase in the excited state lifetime by more than two orders of magnitude. In addition, it enables the highest singlet oxygen quantum yield of 96% and the most beneficial activity in the photocatalytic oxidation of 1,5-dihydroxy-naphthalene.

摘要

芘是一种多环芳烃和有机染料,当与基于过渡金属的生色团结合时,可以形成优越的双生色团体系。然而,关于键合类型(1-2-芘基)和配体中芘基取代基的单独位置对其的影响知之甚少。因此,设计并广泛研究了一系列三种新型二亚胺配体及其各自的杂二亚胺-二膦铜(I)配合物。特别关注了两种不同的取代策略:(i)将芘连接到其最常见于文献中的 1-位,或(ii)将其连接到 2-位,以及(ii)针对 1,10-菲咯啉配体的两个对比取代模式,即 5,6-和 4,7-位。在应用的光谱、电化学和理论方法(UV/vis、发射、时间分辨发光和瞬态吸收、循环伏安法、密度泛函理论)中,已经表明,精确选择衍生化位点至关重要。用 1-芘基取代物取代菲咯啉的 4,7-位上的吡啶环对双生色团的影响最大。这种方法导致还原电位最正移,激发态寿命增加两个数量级以上。此外,它还能实现 96%的最高单线态氧量子产率和在 1,5-二羟基萘光催化氧化中最有益的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74d5/10230506/2241651edd9b/ic3c00482_0009.jpg

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