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由无环二氨基卡宾配体支撑的铂(II)-取代苯乙炔配合物

Platinum(II)-Substituted Phenylacetylide Complexes Supported by Acyclic Diaminocarbene Ligands.

作者信息

Nguyen Yennie H, Soares João Vitor, Nguyen Sami H, Wu Yanyu, Wu Judy I, Teets Thomas S

机构信息

Department of Chemistry, University of Houston, 3585 Cullen Blvd., Room 112, Houston, Texas 77204-5003, United States.

出版信息

Inorg Chem. 2022 Jun 6;61(22):8498-8508. doi: 10.1021/acs.inorgchem.2c00510. Epub 2022 May 24.

Abstract

We introduce phosphorescent platinum aryl acetylide complexes supported by -butyl-isocyanide and strongly σ-donating acyclic diaminocarbene (ADC) ligands. The precursor complexes -[Pt(CNBu)(C≡CAr)] () are treated with diethylamine, which undergoes nucleophilic addition with one of the isocyanides to form the -[Pt(CNBu)(ADC)(C≡CAr)] complexes (). The new compounds incorporate either electron-donating groups (4-OMe and 4-NMe) or electron-withdrawing groups [3,5-(OMe), 3,5-(CF), 4-CN, and 4-NO] on the aryl acetylide. Experimental HOMO-LUMO gaps, estimated from cyclic voltammetry, span the range of 2.68-3.61 eV and are in most cases smaller than the unsubstituted parent complex, as corroborated by DFT. In the ADC complexes, peak photoluminescence wavelengths span the range of 428 nm (, unsubstituted phenylacetylide) to 525 nm (, 4-NO-substituted), with the substituents inducing a red shift in all cases. The phosphorescence values and electrochemical HOMO-LUMO gaps are loosely correlated, showing that both can be reduced by either electron-donating or electron-withdrawing substituents on the aryl acetylides. The photoluminescence quantum yields in the ADC complexes are between 0.044 and 0.31 and the lifetimes are between 4.8 and 14 μs, a factor of 1.8-10× higher (for Φ) and 1.2-3.6× longer (for τ) than the respective isocyanide precursor (Φ = 0.014-0.12, τ = 2.8-8.2 μs).

摘要

我们介绍了由叔丁基异腈和强σ供体非环状二氨基卡宾(ADC)配体支撑的磷光铂芳基乙炔配合物。前体配合物[Pt(CNBu)(C≡CAr)]()用二乙胺处理,二乙胺与其中一个异腈发生亲核加成反应,形成[Pt(CNBu)(ADC)(C≡CAr)]配合物()。新化合物在芳基乙炔上引入了供电子基团(4-OMe和4-NMe)或吸电子基团[3,5-(OMe)₂、3,5-(CF₃)₂、4-CN和4-NO₂]。通过循环伏安法估算的实验性HOMO-LUMO能隙范围为2.68 - 3.61 eV,在大多数情况下比未取代的母体配合物小,这一点得到了密度泛函理论(DFT)的证实。在ADC配合物中,峰值光致发光波长范围为428 nm(,未取代的苯乙炔)至525 nm(,4-NO₂取代),在所有情况下取代基都会导致红移。磷光量子产率(Φ)值与电化学HOMO-LUMO能隙呈弱相关性,表明芳基乙炔上的供电子或吸电子取代基都可以降低二者的值。ADC配合物中的光致发光量子产率在0.044至0.31之间,寿命在4.8至14 μs之间,分别比相应的异腈前体(Φ = 0.014 - 0.12,τ = 2.8 - 8.2 μs)高1.8 - 10倍(对于Φ)和长1.2 - 3.6倍(对于τ)。

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