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钯促进的不饱和恶唑酮的荧光放大:光物理和计算研究。

Fluorescence Amplification of Unsaturated Oxazolones Using Palladium: Photophysical and Computational Studies.

机构信息

Instituto de Síntesis Química y Catálisis Homogénea, ISQCH (CSIC-Universidad de Zaragoza), Pedro Cerbuna 12, 50009 Zaragoza, Spain.

Polimero eta Material Aurreratuak: Fisika, Kimika eta Teknologia Saila, Kimika Fakultatea, Euskal Herriko Unibertsitatea UPV/EHU and Donostia International Physics Center (DIPC) PK 1072, 20080 Donostia, Euskadi, Spain.

出版信息

Inorg Chem. 2023 Jun 26;62(25):9792-9806. doi: 10.1021/acs.inorgchem.3c00601. Epub 2023 Jun 14.

Abstract

Weakly fluorescent ()-4-arylidene-5-(4)-oxazolones (), Φ < 0.1%, containing a variety of conjugated aromatic fragments and/or charged arylidene moieties, have been orthopalladated by reaction with Pd(OAc). The resulting dinuclear complexes () have the oxazolone ligands bonded as a C^N-chelate, restricting intramolecular motions involving the oxazolone. From , a variety of mononuclear derivatives, such as [Pd(C^N-oxazolone)(OCCF)(py)] (), Pd(C^N-oxazolone)(py) (), [Pd(C^N-oxazolone)(Cl)(py)] (), and [Pd(C^N-oxazolone)(X)(NHC)] (, ), have been prepared and fully characterized. Most of complexes - are strongly fluorescent in solution in the range of wavelengths from green to yellow, with values of Φ up to 28% (), which are among the highest values of quantum yield ever reported for organometallic Pd complexes with bidentate ligands. This means that the introduction of the Pd in the oxazolone scaffold produces in some cases an amplification of the fluorescence of several orders of magnitude from the free ligand to complexes -. Systematic variations of the substituents of the oxazolones and the ancillary ligands show that the wavelength of emission is tuned by the nature of the oxazolone, while the quantum yield is deeply influenced by the change of ligands. TD-DFT studies of complexes - show a direct correlation between the participation of the Pd orbitals in the HOMO and the loss of emission through non-radiative pathways. This model allows the understanding of the amplification of the fluorescence and the future rational design of new organopalladium systems with improved properties.

摘要

弱荧光 ()-4-芳叉基-5-(4)-噁唑酮 (),Φ < 0.1%,含有各种共轭芳基片段和/或带电芳叉基,通过与 Pd(OAc)反应而正膦酰化。得到的双核配合物 ()具有作为 C^N-螯合物键合的噁唑酮配体,限制了涉及噁唑酮的分子内运动。从 ,制备了各种单核衍生物,例如 [Pd(C^N-噁唑酮)(OCCF)(py)] ()、Pd(C^N-噁唑酮)(py) ()、[Pd(C^N-噁唑酮)(Cl)(py)] () 和 [Pd(C^N-噁唑酮)(X)(NHC)] (, ),并对其进行了充分的表征。大多数配合物 - 在溶液中在从绿色到黄色的波长范围内具有强烈的荧光,Φ 值高达 28% (),这是具有双齿配体的有机金属 Pd 配合物的量子产率的最高值之一。这意味着 Pd 在噁唑酮支架中的引入在某些情况下会使游离配体 到配合物 - 的荧光放大几个数量级。噁唑酮和辅助配体的取代基的系统变化表明,发射波长由噁唑酮的性质调节,而量子产率则受配体变化的深刻影响。配合物 - 的 TD-DFT 研究表明,Pd 轨道在 HOMO 中的参与与通过非辐射途径发射的损失之间存在直接相关性。该模型允许理解荧光的放大以及具有改进性能的新型有机钯系统的未来合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04e3/10302897/4d0d4daf22bd/ic3c00601_0002.jpg

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