López-López Juan Carlos, Nguyen Yennie H, Jiang Chenggang, Teets Thomas S
University of Houston, Department of Chemistry, Lamar Fleming Jr. Building, 3585 Cullen Blvd. Room 112, Houston, Texas 77204-5003, United States.
Departamento de Química Inorgánica, Facultad de Química, Universidad de Murcia, Campus de Espinardo, Edificio 19, 30100 Murcia, Spain.
Inorg Chem. 2023 Oct 30;62(43):17843-17850. doi: 10.1021/acs.inorgchem.3c02641. Epub 2023 Oct 16.
In this work, we present a series of luminescent platinum acetylide complexes with acetylides that are electronically modified and/or π-extended. Six isocyanide-supported complexes with the general formula -[Pt(CNAr)(C≡CR)] and six acyclic diaminocarbene (ADC) complexes of the form -[Pt(ADC)(C≡CR)], all using the same five acetylide ligands, are described. The compounds are characterized by multinuclear NMR, FT-IR, and single-crystal X-ray diffraction. In most cases, the phosphorescence arises from an acetylide-centered (π → π*) excited state, although in one of the isocyanide compounds there is evidence for a charge-transfer excited state. The photoluminescence wavelength depends strongly on the substitution pattern and extent of the π conjugation on the acetylide, with maxima spanning the range of ca. 460-540 nm. Most photoluminescence lifetimes are long, beyond 50 μs, and quantum yields are low to moderate, 0.043-0.27. The photoluminescence quantum yields and lifetimes in these compounds do not systematically improve in the ADC complexes compared to the isocyanide versions, suggesting the neutral ligand σ-donor character does not play a large role in the excited-state dynamics when the triplet excited state is delocalized over a large π system.
在这项工作中,我们展示了一系列乙炔基被电子修饰和/或π扩展的发光铂乙炔配合物。描述了六种通式为-[Pt(CNAr)(C≡CR)]的异腈支持的配合物和六种形式为-[Pt(ADC)(C≡CR)]的无环二氨基卡宾(ADC)配合物,所有这些配合物都使用相同的五种乙炔基配体。这些化合物通过多核NMR、FT-IR和单晶X射线衍射进行表征。在大多数情况下,磷光源于以乙炔基为中心的(π → π*)激发态,尽管在一种异腈化合物中存在电荷转移激发态的证据。光致发光波长强烈依赖于乙炔基上的取代模式和π共轭程度,最大值范围约为460 - 540 nm。大多数光致发光寿命较长,超过50 μs,量子产率低至中等,为0.043 - 0.27。与异腈型配合物相比,这些化合物在ADC配合物中的光致发光量子产率和寿命并没有系统地提高,这表明当三重激发态在大的π体系上离域时,中性配体的σ供体性质在激发态动力学中不起很大作用。