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用于σ键联BODIPY染料的双可见-近红外或双可见发射的全色铂配合物中的能量转移导向

Directing Energy Transfer in Panchromatic Platinum Complexes for Dual Vis-Near-IR or Dual Visible Emission from σ-Bonded BODIPY Dyes.

作者信息

Geist Fabian, Jackel Andrej, Irmler Peter, Linseis Michael, Malzkuhn Sabine, Kuss-Petermann Martin, Wenger Oliver S, Winter Rainer F

机构信息

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

Department of Chemistry, University of Basel , St.-Johanns-Ring 19, CH-4056 Basel, Switzerland.

出版信息

Inorg Chem. 2017 Jan 17;56(2):914-930. doi: 10.1021/acs.inorgchem.6b02549. Epub 2016 Dec 27.

Abstract

We report on the platinum complexes trans-Pt(BODIPY)(8-ethynyl-BODIPY)(PEt) (EtBPtB) and trans-Pt(BODIPY)(4-ethynyl-1,8-naphthalimide)(PR) (R = Et, EtNIPtB-1; R = Ph, EtNIPtB-2), which all contain two different dye ligands that are connected to the platinum atom by a direct σ bond. The molecular structures of all complexes were established by X-ray crystallography and show that the different dye ligands are in either a coplanar or an orthogonal arrangement. π-stacking and several CH···F and short CH···π interactions involving protons at the phosphine substituents lead to interesting packing motifs in the crystal. The complexes feature several strong absorptions (ε = 3.2 × 10-5.5 × 10 M cm) that cover the regime from 350 to 480 nm (EtNIPtB-1 and EtNIPtB-2) or from 350 to 580 nm (EtBPtB). Besides the typical absorption bands of both kinds of attached dyes, they also feature an intense band near 400-420 nm, which is assigned by time-dependent density functional theory calculations to a higher-energy transition within the ethynyl-BODIPY (EtB) ligand or to charge transfer between the BODIPY (B) and naphthalimide (NI) chromophores. All complexes show dual fluorescence and phosphorescence emission from either the B (EtNIPtB-1 and EtNIPtB-2) or EtB (EtBPtB) ligand with a maximum phosphorescence quantum yield of 41% for EtNIPtB-1. The latter seems to be the highest reported value for room temperature phosphorescence from a BODIPY dye. The complete quenching of the emission from the chromophore absorbing at the higher energy and the appearance of the corresponding absorption bands in the fluorescence and phosphorescence excitation spectra indicate complete and rapid energy transfer to the chromophore with the lower-energy excited state, i.e., EtNI → B in EtNIPtB-1 and EtNIPtB-2 and B → EtB in EtBPtB. The latter process was further investigated by transient absorption spectroscopy, indicating that energy transfer is complete within 0.6 ns. EtNIPtB-1 catalyzes the photooxidation of 1,5-dihydroxynaphthalene with photogenerated O to Juglone at a much faster rate than methylene blue but with only modest quantum yields of 37% and with the onset of photodegradation after 60 min.

摘要

我们报道了铂配合物反式 - Pt(BODIPY)(8 - 乙炔基 - BODIPY)(PEt)(EtBPtB)和反式 - Pt(BODIPY)(4 - 乙炔基 - 1,8 - 萘二甲酰亚胺)(PR)(R = Et,EtNIPtB - 1;R = Ph,EtNIPtB - 2),它们都含有两个不同的染料配体,通过直接的σ键与铂原子相连。所有配合物的分子结构通过X射线晶体学确定,结果表明不同的染料配体呈共面或正交排列。π堆积以及涉及膦取代基上质子的几个CH···F和短CH···π相互作用导致晶体中出现有趣的堆积模式。这些配合物具有几个强吸收峰(ε = 3.2×10 - 5.5×10 M cm),覆盖350至480 nm范围(EtNIPtB - 1和EtNIPtB - 2)或350至580 nm范围(EtBPtB)。除了两种连接染料的典型吸收带外,它们还在400 - 420 nm附近有一个强吸收带,通过含时密度泛函理论计算,该吸收带被归因于乙炔基 - BODIPY(EtB)配体内的高能跃迁或BODIPY(B)与萘二甲酰亚胺(NI)发色团之间的电荷转移。所有配合物都表现出来自B(EtNIPtB - 1和EtNIPtB - 2)或EtB(EtBPtB)配体的双重荧光和磷光发射,EtNIPtB - 1的最大磷光量子产率为41%。后者似乎是BODIPY染料室温磷光报道的最高值。在较高能量吸收的发色团发射的完全猝灭以及荧光和磷光激发光谱中相应吸收带的出现表明能量完全且快速地转移到具有较低能量激发态的发色团,即在EtNIPtB - 1和EtNIPtB - 2中EtNI→B,在EtBPtB中B→EtB。通过瞬态吸收光谱对后一过程进行了进一步研究,结果表明能量转移在0.6 ns内完成。EtNIPtB - 1催化1,5 - 二羟基萘与光生O反应生成胡桃醌的光氧化反应,其速率比亚甲蓝快得多,但量子产率仅为37%,且60分钟后开始光降解。

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