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铂(硼二吡咯)(巯基芘)二元体系中的能量转移导向

Directing energy transfer in Pt(bodipy)(mercaptopyrene) dyads.

作者信息

Irmler Peter, Gogesch Franciska S, Mang André, Bodensteiner Michael, Larsen Christopher B, Wenger Oliver S, Winter Rainer F

机构信息

Fachbereich Chemie, Universität Konstanz, Universitätsstraße 10, D-78457 Konstanz, Germany.

出版信息

Dalton Trans. 2019 Aug 6;48(31):11690-11705. doi: 10.1039/c9dt01737b.

Abstract

We report on the photophysical properties of three dyads that combine a 4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (bodipy, BDP) and a mercaptopyrene (SPyr) dye ligand at a Pt(PEt3)2 fragment. σ-Bonding of the dyes to the Pt ion promotes intersystem crossing (ISC) via the external heavy atom effect. The coupling of efficient ISC with charge-transfer from the electron-rich mercaptopyrene to the electron-accepting BDP ligand (PB-CT) gives rise to a multitude of (potentially) emissive states. This culminates in the presence of four different emissions for the mono- and dinuclear complexes BPtSPyr and BPtSPyrSPtB with an unsubstituted BDP ligand and either a terminal 1-mercaptopyrene or a bridging pyrene-1,6-dithiolate ligand. Thus, in fluid solution, near IR emission at 724 nm from the 3PB-CT state is observed with a quantum yield of up to 15%. Excitation into the BDP-based 1ππ* or the pyrene-based 1ππ* band additionally trigger fluorescence and phosphorescence emissions from the BDP-centred 1ππ* and 3ππ* states. In frozen solution, at 77 K, phosphorescence from the pyrene ligand becomes the prominent emission channel, while PB-CT emission is absent. Alkylation of the BDP ligand in KBPtSPyr funnels all excitation energy into fluorescence and phosphorescence emissions from the KBDP ligand. The assignments of the various excited states and the deactivation cascades were probed by absorption and emission spectroscopy, transient absorption spectroscopy, electrochemical and UV/Vis/NIR spectroelectrochemical measurements, and by quantum chemical calculations. Our conclusions are further corroborated with the aid of suitable reference compounds comprising of just one chromophore. All dyads are triplet sensitizers and are able to generate singlet oxygen.

摘要

我们报道了三种二元化合物的光物理性质,它们在Pt(PEt3)2片段上结合了4,4-二氟-4-硼-3a,4a-二氮杂-s-茚(硼二吡咯,BDP)和巯基芘(SPyr)染料配体。染料与Pt离子的σ键合通过外部重原子效应促进系间窜越(ISC)。高效ISC与从富电子的巯基芘到电子受体BDP配体的电荷转移(PB-CT)的耦合产生了多种(潜在的)发射态。这导致具有未取代BDP配体以及末端1-巯基芘或桥连芘-1,6-二硫醇盐配体的单核和双核配合物BPtSPyr和BPtSPyrSPtB出现四种不同的发射。因此,在流体溶液中,观察到来自3PB-CT态的724 nm近红外发射,量子产率高达15%。激发到基于BDP的1ππ或基于芘的1ππ能带还会触发来自以BDP为中心的1ππ和3ππ态的荧光和磷光发射。在77 K的冷冻溶液中,芘配体的磷光成为主要发射通道,而PB-CT发射不存在。KBPtSPyr中BDP配体的烷基化将所有激发能汇聚到来自KBDP配体的荧光和磷光发射中。通过吸收和发射光谱、瞬态吸收光谱、电化学和紫外/可见/近红外光谱电化学测量以及量子化学计算,对各种激发态和失活级联进行了探测。我们的结论通过仅包含一个发色团的合适参考化合物得到了进一步证实。所有二元化合物都是三线态敏化剂,能够产生单线态氧。

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